Thursday, July 30, 2026

GE’s F404 Engine Production Struggles Threaten TEJAS MK-1A Delivery Momentum


General Electric has invested in a dedicated production line for the F404‑IN20 turbofan engine, a variant designed specifically for India’s Light Combat Aircraft TEJAS.

With India being the sole customer for this engine, it would not make economic sense for GE to deliberately withhold deliveries.

The company’s business model depends on fulfilling contractual obligations, and any intentional delay would undermine its credibility in the global aerospace sector.

The real challenge lies in GE’s ability to ramp up production and sustain the delivery momentum required for the TEJAS MK-1A program. Establishing a new production line is a complex undertaking, involving supply chain stabilisation, workforce training, and quality assurance processes. Even with dedicated facilities, scaling output to meet India’s ambitious timelines is not straightforward.

India’s order book is substantial. The initial contract for 83 TEJAS MK-1A fighters required 99 engines, followed by an additional order for 113 engines to support the expanded fleet of 180 aircraft. GE has publicly committed to supplying between 24 and 26 engines annually from 2026 onwards.

However, this rate of delivery must be sustained consistently if Hindustan Aeronautics Limited is to meet the Indian Air Force’s induction schedule.

The bottleneck is evident in HAL’s assembly lines. Around 30 airframes are already complete and awaiting engines. Without propulsion systems, these aircraft cannot progress to integration, flight testing, or delivery.

The engines are the pacing element of the entire program, dictating the speed at which HAL can roll out fighters to the IAF.

GE’s assurance of delivering 52 engines by the end of next year is encouraging, but it remains a formidable target. Achieving this will require flawless coordination across its supply chain, uninterrupted manufacturing runs, and timely logistics. Any disruption could derail HAL’s production rhythm and delay the IAF’s operational plans.

From a strategic perspective, India’s reliance on a single foreign supplier for such a critical component highlights a vulnerability. This dependence has already prompted renewed interest in indigenous alternatives such as the Kaveri engine revival.

While the F404‑IN20 remains indispensable in the short term, India’s long‑term aerospace self‑reliance hinges on reducing exposure to external supply chain risks.

The TEJAS MK-1A program is not just about numbers; it represents India’s push towards modernising its air combat capabilities and strengthening its defence industrial base. Timely engine deliveries are therefore not merely a logistical requirement but a strategic necessity.

If GE can meet its commitments, HAL will be positioned to accelerate production and deliver fighters that are urgently needed by the IAF.

The coming year will be decisive. Should GE achieve the promised delivery of 52 engines, HAL could clear its backlog and begin handing over aircraft at a faster pace.

This would mark a turning point in the TEJAS program, reinforcing India’s confidence in its partnership with GE while simultaneously underscoring the importance of parallel indigenous development efforts.

Agencies


India Advances Indigenous High Thrust Aero Engine Program With Industry Partnership


India’s Advanced High Thrust Aero Engine Program (AHTAEP) marks a decisive step towards aerospace sovereignty, shifting from a laboratory-centric model to an industry-anchored ecosystem. The initiative combines indigenous design authority with industrial execution, supported by international collaboration, and is expected to deliver 18 flight-worthy engines over the next decade.

India’s Defence Research and Development Organisation (DRDO), through its Gas Turbine Research Establishment (GTRE) in Bengaluru, has formally launched the Advanced High Thrust Class Engine program.

This effort is designed to establish a long-term industrial ecosystem for advanced military aero gas turbine engines. GTRE has issued an Expression of Interest to identify a Development-cum-Production Partner from Indian defence and aerospace firms, who will act as the primary industrial execution agency.

The program represents a structural shift in India’s propulsion development approach. Instead of relying solely on laboratory-led research, the model now anchors execution in industry. The selected partner will handle design translation, tooling, precision manufacturing, system integration, quality assurance, and long-term product support. GTRE will retain design authority and intellectual property rights, ensuring sovereign control over the technology.

The scope of the program covers the complete architecture of a modern turbofan engine. This includes the low-pressure and high-pressure compressors, combustor, turbines, afterburner, exhaust cone, and nozzle.

It also encompasses critical subsystems such as gearboxes, oil and fuel systems, actuators, and Full Authority Digital Engine Control integration. The industrial partner must deliver 18 complete engines within ten years, alongside nearly 2,300 components and sub-assemblies, progressively building capability from parts to full engine validation and sustainment.

The execution model is phased to ensure controlled capability build-up. It begins with design support, followed by manufacturing engineering, subsystem testing, and final integration. This structured approach is intended to mature India’s industrial base in aero-engine technology, a domain where the country has historically faced challenges.

This development reflects the growing role of private analytical and technology-driven entities in shaping India’s aerospace narrative. Alpha Defense has emerged as a key platform for disseminating technical insights, fostering awareness, and building informed discourse around indigenous propulsion and defence programs.

By highlighting India’s High Thrust Aero Engine Program, it underscores the importance of transparency, industry engagement, and public confidence in such strategic initiatives.

Beyond analytical platforms, private industries are expected to play a vital role in the program’s execution. Companies such as Hindustan Aeronautics Limited, Bharat Forge, Larsen & Toubro, and Godrej Aerospace bring proven expertise in precision engineering, metallurgy, and system integration.

Emerging firms like Dynamatic Technologies and Tata Advanced Systems are also positioned to contribute through advanced manufacturing, composites, and subsystem development.

These entities, working in tandem with DRDO and GTRE, can ensure that India’s propulsion ecosystem matures into a sustainable, globally competitive framework.

The synergy between analytical voices like Alpha Defense and industrial execution partners reinforces the narrative of self-reliance, where knowledge dissemination and technological capability converge to strengthen national aerospace ambitions.

International collaboration plays a key role. India has secured a partnership with France’s Safran, which will provide access to advanced hot-section technologies such as single-crystal turbine blades, high-temperature materials, and cooling systems.

These are critical areas where India has traditionally lacked expertise. The collaboration ensures technology transfer while enabling local manufacturing, aligning with the Atmanirbhar Bharat initiative for self-reliance in defence.

The engines developed under this program are expected to power India’s future fighter aircraft, including the Advanced Medium Combat Aircraft and upgraded TEJAS MK-2. With thrust ratings in the 110–125 kilonewton class, these engines will support stealth and multirole capabilities, enhancing India’s air combat potential.

Safran’s involvement builds on its existing relationship with India, including supplying engines for Rafale fighters and maintaining overhaul facilities in Hyderabad and Goa. The new collaboration shifts the dynamic from buyer-supplier to co-development, embedding India deeper into the global aerospace supply chain.

The program is not just about producing engines but about creating a national capability. It aims to establish a sustainable propulsion ecosystem, ensuring India can design, manufacture, test, and support advanced aero engines domestically. This reduces dependence on imports, strengthens strategic autonomy, and positions India as a credible player in global aerospace technology.

The Advanced High Thrust Aero Engine Program is therefore a positive step in the right direction. It combines indigenous design authority, industrial execution, and international collaboration to deliver a capability that has long eluded India. The success of this initiative will determine the future of India’s combat aviation and its standing in global aerospace.

Agencies


India And Germany To Finalise ₹90,000 Crore Submarine Deal For Indian Navy Soon Confirms German Envoy Philipp Ackermann


India and Germany are on the verge of finalising the ₹90,000 crore Project-75I submarine deal, with German envoy Philipp Ackermann confirming that the agreement could be signed as early as next month, Economic Times reported.

The deal will see six advanced Type-214 submarines built in India, significantly boosting the Indian Navy’s underwater warfare capabilities.

India has selected Germany’s Type-214 submarines as the foundation for the Project-75I program. The agreement, valued at over €8 billion, will be executed through a partnership between Germany’s ThyssenKrupp Marine Systems (TKMS) and India’s Mazagon Dock Shipbuilders.

This collaboration is designed to strengthen India’s conventional submarine fleet through indigenous construction and technology transfer, marking a major step in India’s naval modernisation drive.

The Type-214 submarine is an advanced diesel-electric attack vessel equipped with Air Independent Propulsion (AIP) technology. Developed by Howaldtswerke-Deutsche Werft (HDW), the design merges the hull characteristics of the Type 209 family with the fuel cell propulsion system of the Type 212A. 

The AIP system allows the submarine to remain submerged for extended periods without surfacing, greatly enhancing stealth and survivability.

The submarine measures 65 metres in length, with a beam of 6.3 metres and a draught of 6 metres. It displaces 1,690 tonnes on the surface and 1,860 tonnes when submerged. Its pressure hull is built from HY-100 ferromagnetic steel, reducing its magnetic signature.

Propulsion is provided by two MTU 16V-396 diesel engines generating 3.96 MW, a Siemens Permasyn low-speed permanently excited electric motor producing 2.85 MW, and two HDW Polymer Electrolyte Membrane hydrogen fuel cell modules rated at 120 kW each. The system integrates modern diesel generator sets and can operate with either lead-acid or lithium-ion batteries.

Performance-wise, the Type-214 achieves a surfaced speed of 10–12 knots and a submerged sprint speed of 20 knots. On AIP, it cruises between 2–6 knots. It is rated to operate beyond 250 metres depth, with estimates suggesting a maximum diving depth of 400 metres.

The submarine has an endurance of up to 84 days and can remain submerged continuously for three weeks using AIP. Its range extends to 12,000 nautical miles on the surface and 1,248 nautical miles underwater using fuel cells.

The vessel carries eight 533 mm bow torpedo tubes capable of launching heavyweight torpedoes such as the DM2A4 and Black Shark, as well as submarine-launched anti-ship missiles like the Sub-Harpoon.

Its combat suite includes the ORCCA combat management system, ISUS 90 sonar and weapon control system, and SPHINX-D navigation radar. It also integrates torpedo countermeasures and supports modular payloads for future missions. The submarine is designed to accommodate special operations forces and offers universal deployment capabilities.

Stealth features include an X-rudder configuration for improved manoeuvrability, a permanently excited motor with variable control to reduce noise, and optimisation to minimise acoustic and magnetic signatures.

The vessel meets high shock-resistance standards, enhancing survivability. It operates with a crew of 27, comprising five officers and 22 sailors.

Strategically, the deal reflects India’s push for military self-reliance and Germany’s growing interest in the Indo-Pacific. With China expanding its naval presence and Pakistan deepening ties with Beijing, India’s acquisition of advanced AIP-equipped submarines is critical for deterrence and securing sea lanes.

The partnership also diversifies India’s defence imports away from traditional reliance on Russia, while boosting Mazagon Dock’s long-term industrial pipeline.

Agencies


Safran Suspends FCAS Engine To Prioritise M88 T-REX For Rafale F5


Safran has officially suspended its role in the Future Combat Air System (FCAS) engine project, redirecting all resources to the M88 T-REX engine for the Rafale-F5, ePlaneAI reported.

This marks a decisive French pivot toward national priorities, with the FCAS propulsion pillar collapsing after disputes with Germany and Spain.

Safran had been working with MTU Aero Engines and ITP Aero on the Next Generation Fighter (NGF) engine under the FCAS program. That collaboration has now ended, with Safran confirming that funding for the NGF engine will cease in September 2026. The company’s CEO Olivier Andriès stated that Safran only has the resources to develop one combat aircraft engine, and the French roadmap will take precedence.

The M88 T-REX engine is central to the Rafale-F5 upgrade. First unveiled at the Paris Air Show in 2025, it increases afterburning thrust from 7.5 to around 9 metric tons while retaining the same physical dimensions as the current M88.

This enhancement is designed to sustain Rafale performance in heavy configurations without compromising range. French Air and Space Force officials have indicated that a sixth-generation fighter would require closer to 11 metric tons of thrust, making the T-REX a bridging solution until more advanced propulsion systems are developed.

The decision reflects the breakdown of Franco-German cooperation on FCAS. Disputes over industrial leadership, intellectual property, and operational requirements led to the collapse of the NGF project earlier this year.

The propulsion system was one of the eight technological pillars of FCAS, managed under the EUMET joint venture between Safran and MTU. With the NGF cancelled, the propulsion pillar lost its continuity, leaving MTU and ITP Aero without a clear path forward.

Safran’s move underscores the tension between national defence imperatives and multinational collaboration. By prioritising the Rafale-F5, France is ensuring domestic aerospace capability while risking delays and uncertainty for European defence integration. Analysts warn that this could reshape the competitive landscape in military propulsion, as rivals may seek to fill the gap left by Safran’s withdrawal.

The Rafale-F5 program itself is being accelerated, with France delaying certain Rafale deliveries to redirect resources toward the upgrade. Dassault Aviation has argued for launching a demonstrator by 2031 or 2032, potentially powered by the M88 T-REX. Germany, meanwhile, is pursuing its own sixth-generation fighter initiative under “Team Gen 6,” led by Airbus Defence and Space.

This development highlights the broader strategic shift in European defence. The €100 billion FCAS project was intended to unify European air combat capabilities, but national divergences have fractured the effort.

Safran’s decision to concentrate on the T-REX engine signals France’s determination to secure its own technological roadmap, even at the expense of multinational cohesion.

The industry will closely monitor how this affects both the Rafale program and the trajectory of European defence cooperation.

The suspension of FCAS engine development is not just a technical setback but a geopolitical signal of France’s prioritisation of sovereignty in defence technology.

Agencies


AIESL Completes Base Maintenance of IndiGo A320 Rudder


AIESL has successfully carried out base maintenance on the rudder of an IndiGo Airbus A320, marking a significant achievement in its expanding maintenance capabilities and reinforcing safety and reliability standards for India’s largest airline.

This milestone comes amid heightened regulatory focus on rudder inspections following recent European directives.

Air India Engineering Services Limited (AIESL) has confirmed the successful completion of base maintenance work on the rudder of an IndiGo Airbus A320 aircraft. The task was conducted at its Delhi facility, which is approved for comprehensive base maintenance of Airbus A319, A320, and A321 aircraft across multiple engine types.

The rudder is a critical flight control surface, and its maintenance requires specialised inspection and repair procedures. AIESL’s approval covers extensive checks, including structural inspections, modifications, and defect rectification. The successful completion of this rudder maintenance demonstrates the organisation’s technical expertise and compliance with international standards.

This achievement is particularly relevant in the context of the European Union Aviation Safety Agency’s (EASA) recent Airworthiness Directive 2026-0144, which mandates inspections of the rudder outer skin on certain Airbus A320 and A321 models.

The directive was introduced after concerns about dents caused during production that could compromise structural integrity and flight control. AIESL’s work aligns with these global safety requirements, ensuring IndiGo’s fleet remains compliant and airworthy.

IndiGo, India’s largest airline with more than 900 Airbus aircraft on order, has been expanding its reliance on domestic maintenance providers to support its rapidly growing fleet.

AIESL has already demonstrated its capability by completing simultaneous base maintenance checks on multiple IndiGo aircraft earlier this year, a rare feat in the industry. The successful rudder maintenance further strengthens its position as a trusted partner in IndiGo’s operational resilience strategy.

The maintenance involved detailed inspections, including out-of-phase tasks, structural repair, and corrective actions where necessary. Certificates of Release to Service (CRS) were issued following completion, confirming the aircraft’s readiness for safe operations. This reflects AIESL’s uncompromising commitment to safety, airworthiness, and operational efficiency.

The milestone also highlights India’s growing self-reliance in aviation engineering. With IndiGo’s fleet expansion and increasing regulatory requirements, the ability of domestic organisations like AIESL to perform complex base maintenance tasks is crucial for reducing dependence on foreign facilities and ensuring timely support for airlines.

The successful rudder maintenance is expected to pave the way for further collaboration between IndiGo and AIESL, particularly in areas such as long-term structural inspections, modifications, and compliance with evolving international directives.

It also reinforces IndiGo’s broader strategy of maintaining fleet resilience, operational efficiency, and safety as it continues its transformation into a global airline.

Agencies


India’s Private Space Sector Gains Momentum With Policy Support And Global Investment


The Department of Space has confirmed that India’s private space sector is maturing rapidly, with measurable outcomes six years after the reforms of June 2020 opened the industry to private participation.

In 2026 alone, investment worth $187 million was reported, while IN‑SPACe granted 108 authorisations to Non‑Government Entities for activities ranging from satellite operations to launch systems. This reflects a significant expansion of private involvement in India’s space program.

The Indian Space Policy 2023 has defined roles and responsibilities for all stakeholders, supported by a liberalised FDI policy and detailed norms for authorisation.

IN‑SPACe is also drafting safety and security guidelines to ensure strategic and national interests are protected. Seventeen start‑ups have already received authorisation to carry out space activities, signalling confidence in the regulatory framework.

The government has rolled out multiple initiatives to support private players. These include a ₹1,000 crore Venture Capital Fund, a ₹500 crore Technology Adoption Fund, discounted pricing for ISRO facilities, and the IN‑SPACe Seed Fund Scheme.

Access to ISRO infrastructure, mentorship, and technology transfer has been enabled, alongside skill development programs and the establishment of a technical centre for affordable testing and simulation. 

The PSLV Orbital Experimental Module has provided a low‑cost platform for space worthiness validation, while promotional events such as industry meets and awareness workshops have created business opportunities.

Further measures include the launch of “Satellite Bus as a Service” to accelerate indigenous satellite development, and encouragement for state governments to establish space manufacturing clusters. 

These clusters aim to strengthen the domestic supply chain, attract investment, and build an integrated industrial ecosystem. Together, these initiatives are designed to increase India’s share of the global space economy.

The outcomes are striking. Active space start‑ups have grown from just one in 2014 to over 400 today. Private investment has crossed $600 million, with cumulative funding rising from $100.5 million in 2021‑22 to $618.5 million by March 2026.

The investor base has broadened to include sovereign wealth funds, global asset managers, and strategic corporates.

Skyroot Aerospace became India’s first space‑tech unicorn, Digantara raised $50 million with international backing, and Pixxel secured investment from Alphabet. Dhruva Space, GalaxEye, and Agnikul Cosmos have also attracted significant funding, reflecting strong commercial traction.

Private missions have demonstrated capability both at home and abroad. Pixxel, Digantara, and XDLINX Spacelabs reached orbit together in 2025, while Pixxel completed the first phase of its Firefly constellation, now the highest‑resolution hyperspectral system in service.

Dhruva Space flew multiple missions, and firms such as Bellatrix, GalaxEye, HEX‑20, and OrbitAid have showcased orbital capabilities. Agnikul test‑fired its 3D‑printed semi‑cryogenic engine, and Skyroot tested a solid motor for its Vikram rocket. The POEM platform has revolutionised space qualification, carrying payloads from numerous start‑ups and academic institutions.

Commercial reach is expanding globally. Digantara has opened offices in the US and Europe, Pixxel supplies hyperspectral data internationally, and IN‑SPACe has working relationships with over 45 countries.

India’s first privately owned Earth‑observation constellation is being built by Allied Orbits, a consortium of Pixxel, Dhruva Space, SatSure, and PierSight, with a commitment of ₹1,200 crore to deploy 12 multimodal satellites over five years.

The government’s proactive measures in policy reform, infrastructure development, skill creation, capital access, technology transfer, demand generation, and international collaboration are reshaping India’s space sector.

The private industry is now a vital partner in national space ambitions, complementing ISRO’s heritage and infrastructure with agility, innovation, and capital. This synergy is positioning India as a rising force in the global space economy.

PIB


Resolve To Make India Developed By 2047 And Build World’s Most Powerful Air Force Through Self-Reliance: Minister Sanjay Seth


Union Minister of State for Defence Sanjay Seth on Thursday reaffirmed the government’s commitment to building a self-reliant defence ecosystem, declaring that India’s resolve is to become a developed nation by 2047 and to transform the Indian Air Force into the most powerful air force in the world through indigenous capabilities and innovation.

Speaking at a defence sector gathering in New Delhi, Seth underlined that India has always believed in peace and the principle of Vasudhaiva Kutumbakam, yet remains fully prepared to respond strongly to any challenge to its sovereignty and security.

He remarked that India’s culture teaches peace and the welfare of humanity, but when threatened by terrorism or hostile intent, the nation knows how to respond with the spirit of Lord Shiva’s Tandav.

He highlighted the importance of Atmanirbhar Bharat in the defence sector, stressing that the country’s resolve is to make the Indian Air Force one of the most powerful globally through indigenous capabilities. He added that this vision is not merely aspirational but a firm determination that will never remain incomplete.

Seth emphasised the critical role of defence industries, startups, academia, and the armed forces in building future military capabilities. He noted that a soldier fighting on the border is never alone, as the story of his victory is shaped in factories and laboratories. The technology developed today, he said, will determine the strength of India’s forces tomorrow.

He urged defence manufacturers and innovators to focus on future warfare requirements and emerging technologies, warning that delays in acquiring critical technology could impact national security. He observed that the world is moving very fast and India cannot afford to be satisfied with past achievements, but must continue advancing.

Praising India’s startup ecosystem, Seth said Indian entrepreneurs are capable of competing with the best in the world. He stressed that the energy and talent of India’s youth will play a decisive role in shaping the future, adding that the country’s startups are no less than any globally.

Drawing attention to the unique spirit of the Indian armed forces, Seth remarked that while the world teaches that one plus one equals two, for the Indian Army one plus one equals eleven. He explained that this reflects the power of teamwork, commitment, and determination.

The Minister also highlighted the need to increase the contribution of the manufacturing sector to India’s GDP, stating that innovation in defence will strengthen both the country’s economic and strategic position.

He pointed to India’s recent achievements in infrastructure, technology, and defence as evidence of remarkable progress, urging that the same momentum must be maintained.

He said India’s youth is carrying the dream of a developed India by 2047 and will play a key role in shaping the nation’s future. He concluded by stating that the innovations created today will be remembered by future generations, and that the country stands united behind its innovators, with 140 crore Indians supporting them.

ANI


India Needs Both IDDM And Make In India Projects, Says Defence Secretary Rajesh K Singh


Defence Secretary Rajesh Kumar Singh has explained that India requires both IDDM (Indigenously Designed, Developed and Manufactured) projects and Make in India initiatives to achieve a balanced defence industrial base.

He emphasised that while IDDM ensures design sovereignty and technological independence, Make in India projects allow rapid capacity building through domestic assembly and production partnerships.

Singh clarified that India’s defence modernisation cannot rely solely on one approach. IDDM projects are essential for long-term technological self-reliance, ensuring that critical platforms such as fighter aircraft, tanks, and missile systems are fully designed and developed within India. This secures intellectual property, strengthens indigenous R&D, and prevents dependence on foreign suppliers for core technologies.

At the same time, Make in India projects provide immediate capability gains by encouraging domestic manufacturing of systems that may initially be designed abroad. Singh explained that this approach allows India to quickly expand its industrial base, create jobs, and build supply chains while gradually increasing indigenous content. Over time, these projects can evolve into full IDDM status as Indian firms acquire design expertise.

He highlighted that the phased approach is crucial because defence technology readiness levels vary across platforms. For example, while India has achieved significant progress in areas such as the Light Combat Aircraft TEJAS and Pinaka rocket systems, other advanced technologies like jet engines, long-range air defence systems, and certain naval platforms may require initial collaboration with foreign partners before full indigenisation.

Singh also pointed out that Make in India projects strengthen private sector participation by providing visibility of demand and easing entry barriers. This creates confidence among start-ups and established firms to invest in defence manufacturing.

He noted that Bangalore has emerged as a major hub for aerospace and defence production, with both public and private sector companies contributing to indigenous capability building.

The Defence Secretary stressed that both approaches are complementary rather than competing. IDDM projects represent the pinnacle of indigenous capability, while Make in India projects act as stepping stones that accelerate industrial growth and reduce import dependence. Together, they form the backbone of India’s defence indigenisation strategy.

He underlined that the government’s defence capital expenditure allocations and R&D investments are structured to support this dual-track approach.

The Defence Acquisition Procedure already prioritises IDDM projects, but also provides space for Make in India initiatives to ensure that immediate operational requirements are met without delay.

Singh concluded by stating that India’s strategic objective is to achieve design sovereignty in critical systems while simultaneously building a robust domestic manufacturing ecosystem. This balanced path will allow India to meet short-term capability needs while securing long-term technological independence.

Agencies


ISRO And JAXA Advance Chandrayaan-5 Preparations With Bangalore Meeting


ISRO and JAXA scientists have advanced Chandrayaan-5 preparations with a high-level meeting in Bangalore, focusing on lander-rover interfaces and payload integration, India Today reported.

The mission, scheduled for launch around 2027–2028, will probe the Moon’s south polar region for water ice, a resource critical for future human exploration.

India’s Chandrayaan-5 mission has taken a significant step forward as experts from the Indian Space Research Organisation and the Japan Aerospace Exploration Agency convened at the U R Rao Satellite Centre in Bangalore.

The meeting was aimed at refining technical coordination for the Lunar Polar Exploration mission, also known as LUPEX.

The discussions centred on the Interface Control Specification between the Indian-built lunar lander and the Japanese rover. This specification is crucial to guarantee seamless communication, power transfer and operational compatibility once the two spacecraft are deployed on the lunar surface. Engineers from both agencies are working to ensure that every interface functions flawlessly during the mission.

The teams also reviewed the suite of scientific instruments that will be carried aboard the Japanese rover. These payloads are designed to investigate the lunar surface and search for water ice deposits in the Moon’s south polar region. This area is considered one of the most scientifically important for future human exploration, as permanently shadowed regions may contain frozen water accumulated over billions of years.

The Japanese rover is expected to be larger and more capable than the Pragyan rover used in Chandrayaan-3. It will be able to travel longer distances and conduct detailed investigations of shadowed regions, drilling into the lunar soil and analysing samples. Scientists believe that understanding the quantity, distribution and accessibility of lunar water ice will be vital for establishing future lunar bases and supporting long-duration human missions.

The mission builds on the success of Chandrayaan-3, which made India the first nation to achieve a soft landing near the Moon’s south pole in August 2023. While Chandrayaan-3 demonstrated landing technology and conducted short-duration experiments, Chandrayaan-5 aims to deliver a more ambitious scientific program with extended operational capability.

Technical coordination at URSC highlights the growing collaboration between India and Japan in space exploration.

The partnership is not only about advancing technology but also about strengthening international cooperation. Instruments from NASA and the European Space Agency are also expected to join the payload, adding further global participation to the mission.

The Chandrayaan-5 mission is currently targeted for launch between 2027 and 2028, using Japan’s H3 rocket from the Tanegashima Space Centre. With preparations accelerating, the Bengaluru meeting marks a critical milestone in ensuring that the mission is ready to deliver ground breaking science on the Moon.

Agencies


Government Informs Parliament That NavIC Currently Cannot Provide Standalone Positioning Services


India’s indigenous navigation system NavIC has dropped below the minimum operational threshold, with only three satellites currently functional, meaning standalone positioning services are unavailable. 

Timing services remain active, but restoring the constellation is critical to reduce reliance on foreign systems.

The government has informed Parliament that NavIC, officially known as the Indian Regional Navigation Satellite System (IRNSS), is presently unable to provide standalone positioning services.

At least four operational satellites are required to independently determine a user’s position, but only three remain active: IRNSS-1B, IRNSS-1I, and NVS-01. This shortfall follows the end of IRNSS-1F’s mission life, which has left the constellation below the minimum requirement.

While NavIC’s timing services continue to function, the absence of sufficient satellites means that users cannot rely solely on NavIC for navigation. Instead, NavIC signals are currently integrated into a multi-constellation environment alongside GPS, Galileo, and GLONASS, ensuring that users do not face immediate security or operational vulnerabilities.

However, this hybrid reliance underscores India’s dependence on foreign infrastructure for critical navigation and timing services.

The failure of IRNSS-1F’s atomic clock marked a significant setback. Atomic clocks are essential for precise Positioning, Navigation and Timing (PNT) services, as even minor timing errors can cause large inaccuracies in determining position.

IRNSS-1F had already completed its planned ten-year mission life before its final clock failed, leaving the system unable to generate navigation signals. Although the satellite remains in orbit, it now only supports limited messaging services for disaster management and societal applications.

India has launched eleven satellites since 2013 to establish and maintain the NavIC constellation. Several first-generation satellites have lost navigation capability due to failures in imported rubidium atomic clocks.

The operational load now rests on IRNSS-1B, IRNSS-1I, and NVS-01, the latter being the first of the second-generation NavIC satellites launched in May 2023. Unfortunately, the NVS-02 mission suffered propulsion issues and could not reach its intended orbit, further delaying the restoration of full service.

ISRO is working to rebuild the constellation with upcoming launches of NVS-03, NVS-04, and NVS-05. These satellites are designed to provide accurate position, velocity, and timing services across India and up to 1,500 kilometres beyond its borders.

Civilian users can expect accuracy better than ten metres once the constellation is restored. The expansion of NavIC is also crucial for strategic applications, including defence, disaster management, and secure communications.

Despite the current shortfall, NavIC has already demonstrated significant utility. Over 10,400 locomotives use NavIC for real-time train tracking, while more than 40,000 fishing vessels are equipped with NavIC receivers for emergency alerts and navigation support.

Mobile handset manufacturers have also integrated NavIC compatibility into over 60 models, reflecting growing commercial adoption. The system provides critical services such as cyclone and tsunami warnings, potential fishing zone advisories, and international maritime boundary alerts.

Restoring NavIC’s full constellation is vital for India’s long-term strategic autonomy. Indigenous navigation capability reduces dependence on foreign systems, strengthens national security, and supports emerging technologies such as autonomous vehicles, precision agriculture, and resilient communication networks.

The government and ISRO are prioritising the launch of new satellites to ensure that India regains full standalone navigation capability in the near future.

Agencies


In An Energy Security Initiative, India Launches ₹80,000 Crore Samudra Manthan Program To Boost Deep Water Oil Exploration


India has unveiled a massive ₹80,000 crore war chest under the Samudra Manthan program to finally crack deep water oil exploration, offering to fund up to half the cost of wells that can exceed ₹1,000 crore each.

This marks a strategic shift from penalising companies for under‑drilling to the government sharing financial risk directly, with ONGC already spudding its first appraisal well in the Mahanadi basin.

India is launching this initiative to reduce its heavy dependence on imported crude oil, which currently stands at around 85% of consumption. Deep water reserves are seen as one of the few viable levers to alter this equation, given their potential scale and strategic importance.

The Samudra Manthan program is designed to attract both domestic and global energy companies by lowering the financial risks associated with offshore exploration.

The government has extended bidding under the Open Acreage Licensing Program until 17 September 2026, offering 18 deep and ultra‑deep water blocks for exploration. These blocks are located across frontier basins with significant geological promise. The extension allows investors more time to evaluate the benefits of the new incentive scheme and align their bids with the financial support now on offer.

Drilling a single deep water well in India costs between ₹1,000 crore and ₹1,200 crore, while ultra‑deep water wells can cost even more. Such high costs have historically deterred foreign firms, especially given India’s modest exploration success in deep waters.

By reimbursing up to 50% of drilling costs and partly funding 3D seismic surveys, the government aims to de‑risk exploration and encourage wider participation. Funding per well will be capped to prevent cost overruns, ensuring fiscal discipline while still offering meaningful support.

The incentives are available to both state‑run enterprises and private explorers. ONGC has already spudded its first deep water exploratory well under the Samudra Manthan umbrella, signalling early momentum.

This marks a departure from the earlier minimum work program regime, where companies were penalised for not drilling mandatory wells despite prohibitive costs. Now, the government is directly sharing the burden, making exploration more commercially viable.

Beyond financial support, the government is also modernising geological datasets. Legacy 2D seismic data is being reprocessed using advanced imaging technologies, and new 3D surveys are planned.

This will provide clearer subsurface images, refine drilling targets, and improve geological models, thereby enhancing the chances of successful discoveries.

The initiative is expected to attract global companies with deep water expertise and advanced technologies. By sharing risks and improving data quality, India hopes to unlock its offshore hydrocarbon potential and strengthen energy security.

The Samudra Manthan program represents one of the most ambitious steps in India’s upstream sector in recent years, aiming to transform exploration dynamics and pave the way for future discoveries.

Agencies


Indian Maritime Authority Issues Advisory To Protect Seafarers Amid Rising Piracy Threats


The Directorate General of Maritime Administration has issued a fresh advisory aimed at safeguarding Indian crew members deployed on merchant vessels. The directive applies to both Indian and foreign-flagged ships carrying Indian seafarers.

It calls for heightened vigilance while transiting the Gulf of Aden and waters off the Horn of Africa, where piracy incidents have seen a resurgence in recent months.

The advisory follows a series of piracy attempts reported since April 2026 in the region. These incidents have raised concerns about the safety of Indian sailors, prompting the maritime authority to strengthen precautionary measures.

The Gulf of Aden and the Horn of Africa remain among the most volatile maritime corridors, with international shipping frequently targeted by organised pirate groups.

The Directorate General of Maritime Administration has instructed shipowners, operators, masters, company security officers and recruitment and placement service licence agencies to strictly adhere to the latest edition of Best Management Practices, known as BMP 5.

This internationally recognised framework provides guidelines for protection against piracy and maritime security threats. BMP 5 emphasises layered defence measures, including watchkeeping, evasive manoeuvres, and coordination with naval forces operating in the region.

The advisory further stresses the importance of comprehensive ship security risk assessments before entering the High-Risk Area. These assessments are designed to identify vulnerabilities and ensure preparedness against potential attacks. Ship Security Plans must be updated and implemented effectively, ensuring that crew members are trained and equipped to respond to hostile boarding attempts.

The Gulf of Aden has historically been a hotspot for piracy, particularly during the peak of Somali pirate activity in the late 2000s and early 2010s. Although international naval patrols and coordinated security programs had reduced incidents significantly, recent months have witnessed a worrying uptick. Analysts suggest that economic instability in coastal regions, coupled with reduced naval presence, has emboldened pirate groups once again.

India, as a major seafaring nation with thousands of crew deployed globally, has consistently prioritised maritime safety. The Indian Navy has maintained a strong presence in the Western Indian Ocean, frequently responding to distress calls and thwarting piracy attempts.

The latest advisory complements these operational measures by reinforcing the responsibilities of shipping companies and recruitment agencies in protecting Indian nationals.

The directive also aligns with international maritime security initiatives, including cooperation with the Combined Maritime Forces and other multinational task groups. By mandating strict compliance with BMP 5 and updated Ship Security Plans, the Directorate General of Maritime Administration seeks to ensure that Indian crew members are not exposed to unnecessary risks while supporting global trade routes.

PTI


Rajnath Singh Inaugurates India’s First Department of Military Medicine To Strengthen Combat Readiness And Disaster Response


Defence Minister Rajnath Singh has inaugurated India’s first Department of Military Medicine at the Command Hospital (Central Command) in Lucknow, marking a historic step in strengthening operational medical preparedness against emerging threats such as weapons of mass destruction and battlefield injuries.

The facility will serve as a hub for research, training, and innovation in military medicine, enhancing combat readiness and disaster response capabilities.

The Defence Minister emphasised that the threat of weapons of mass destruction continues to persist in the modern era, making specialised medical preparedness essential. He noted that soldiers deployed in extreme climates and complex operational regions face unique physical and psychological stresses, and the new department will develop medical protocols tailored to these conditions.

The Department of Military Medicine has been established under the Directorate General of Medical Services (Army). It is conceived as a centre of excellence and will act as the principal academic, research, and doctrinal hub for the Armed Forces Medical Services.

It will provide structured education and training in military and operational medicine, including postgraduate programs in combat medicine, combat surgery, and trauma care.

Singh highlighted that preventive healthcare must be viewed as the first line of defence. He called for systems that can identify and mitigate health risks early through disease surveillance, vaccination, sanitation, nutrition, occupational health, and regular screenings.

He stressed the importance of leveraging technologies such as artificial intelligence, wearable devices, predictive analytics, and advanced diagnostics to monitor soldiers’ health in real time.

The department will focus on key disciplines including military trauma and damage control, combat psychiatry and resilience, environmental and operational medicine, military medical logistics, CBRNe medical response, emergency medicine, disaster medicine, humanitarian assistance and disaster relief, as well as research, audit, and data analytics.

It will also foster innovation in battlefield medicine through simulation-based training, telemedicine, prolonged field care, and medical decision support.

The Defence Minister expressed confidence that the department will strengthen national security by ensuring advanced medical support for troops and reinforcing their confidence in receiving timely care during operations. He described the initiative as a revolutionary shift in India’s defence capabilities, enhancing both combat medical readiness and humanitarian response.

The facility will be developed in phases. The initial phase will focus on establishing academic programs, followed by the creation of centres of excellence in humanitarian assistance and disaster relief and CBRNe medicine. Over time, it is expected to evolve into a nationally and internationally recognised hub for military medicine.

India, as the world’s largest democracy and a responsible power, contributes significantly to United Nations peacekeeping missions and humanitarian operations beyond its borders. The new department will enhance expertise in disaster response, field hospital deployment, mass casualty management, and epidemic control, thereby elevating India’s stature in global military medicine research and practice.

Singh also noted that the department will open new career pathways for young medical professionals, enabling them to pursue super-specialisation in military medicine. This will enhance intellectual capital within the military and elevate India’s position in international medical research.

PTI


Massive Protests Continue In Rawalakot As Awami Committee Vows To Challenge Cruel Rulers


Protests continued in Rawalakot in Pakistan‑occupied Jammu and Kashmir on Thursday as demonstrators remained camped at D‑Chowk, alleging that security forces had used lethal force against them.

Social media accounts linked to the Jammu Kashmir Joint Awami Action Committee reported that the sit‑in had lasted several days, with participants demanding a long march and denouncing what they described as brutality and target killings.

One protester, speaking in a video shared online, claimed that armed personnel had positioned themselves in surrounding buildings and were deliberately targeting unarmed civilians.

He alleged that most of those killed had suffered headshots, comparing the violence to scenes from video games rather than real life. He said that firing continued intermittently during the night, spreading fear and terror among the public, and insisted that protesters were being deliberately targeted.

The protester appealed directly to international media, accusing Pakistani authorities of misleading journalists. He urged reporters to visit Rawalakot, see who was armed, and witness who was shooting at the people. He argued that only by coming to the ground could the truth be revealed.

Khan Ilyas Khan, a core committee member of the Joint Awami Action Committee, declared that despite the deaths, the movement would not lose hope. He said the protesters would rise again with double strength and challenge what he called cruel rulers. He accused the authorities of labelling peaceful demonstrators as terrorists simply for demanding public rights.

He paid tribute to Osama Jamil, a member of the movement, describing him as immortal and noting that the people of Poonch and the wider Kashmir region were in mourning.

The Awami Action Committee‑linked accounts also issued calls for international solidarity. They urged Brazilian trade unions, workers’ organisations, human rights groups, student movements and activists to protest against repression in Kashmir.

A poster circulated online announced a demonstration titled “Stop the Repression in Kashmir Protest” outside the Commercial Section of the Pakistan Embassy in São Paulo on Thursday, 30 July.

Meanwhile, the Jammu and Kashmir unit of Shiv Sena (UBT) announced plans to stage a protest against what it described as a massacre and human rights violations by the Pakistan Army in Pakistan‑occupied Jammu and Kashmir. The allegations made by protesters and Awami Committee‑linked accounts could not be independently verified.

The continuing unrest in Rawalakot reflects a deepening crisis in the region. Reports of shootings, communications blackouts and appeals for international intervention have added to the atmosphere of defiance and grief.

The mobilisation of overseas Kashmiri communities and solidarity calls from international organisations highlight the growing resonance of the protests beyond the region itself. The situation underscores the tension between local demands for rights and the heavy‑handed response of the authorities, with the potential for further confrontation in the days ahead.

ANI


Rajnath Singh Felicitates All-Women Tri-Services Crew of IASV Triveni For Historic


Defence Minister Rajnath Singh felicitated nine women officers of the Indian Army, Indian Navy and Indian Air Force who successfully completed the country’s first-ever all-women Tri-services circumnavigation sailing expedition, ‘Samudra Pradakshina’, onboard the Indian Army Sailing Vessel (IASV) Triveni.

The ceremony took place in New Delhi, where Singh praised the team’s courage and determination in completing the 314-day voyage covering nearly 25,500 nautical miles across four oceans.

The Defence Minister described the expedition as a symbol of Nari Shakti and a remarkable example of Tri-service jointness that would inspire every Indian. The officers shared their experiences, noting that the demanding nature of the voyage made it both memorable and rewarding.

They emphasised that their unwavering commitment to making the nation proud kept them motivated, enabling them to overcome immense physical and mental challenges.

Singh remarked that their dedication had inspired him personally and reinforced his own resolve. He highlighted that their achievement demonstrates how firm conviction and determination can help accomplish any goal in life.

He described their capability and confidence as “incredible” and asserted that the successful completion of ‘Samudra Pradakshina’ shattered stereotypes claiming women cannot accomplish arduous military missions. He told the officers that every daughter in India could look at them and believe she too could cross oceans and conquer the world.

The Defence Minister termed the expedition as a shining example of Tri-service jointness, noting that officers from the Army, Navy and Air Force sailed together on the same vessel under the same flag in pursuit of a shared mission. He added that the expedition proved no horizon is too vast to conquer if the Services move forward together.

Singh commended the team for showcasing India’s engineering excellence, indigenous capabilities and technological advancements to the countries they visited. He said they conveyed a message to the world that India is second to none in any field.

The event was attended by Chief of the Army Staff General Dhiraj Seth, Defence Secretary Rajesh Kumar Singh, Vice Chief of the Air Staff Air Marshal Ashutosh Dixit, Vice Chief of the Naval Staff Vice Admiral Ajay Kochhar and other senior officers of the three Services.

The IASV Triveni was virtually flagged-in by Rajnath Singh on 22 July 2026 in Mumbai. He had also graced the flag-off ceremony on 11 September 2025 through video conferencing.

The Defence Ministry noted that the success of the mission was made possible through meticulous planning, nearly two years of intensive training, a dedicated 24x7 shore-based support network and the unwavering commitment of numerous organisations and support agencies.

The expedition fulfilled all internationally recognised criteria for a circumnavigation by crossing all meridians of longitude, crossing the Equator twice, crossing the International Date Line and rounding the Three Great Capes – Cape Leeuwin, Cape Horn and the Cape of Good Hope.

The successful passage through the formidable Drake Passage and rounding of Cape Horn earned the crew membership of the prestigious fraternity of Cape Horners, an honour reserved for sailors who conquer one of the world’s most demanding maritime passages.

Beyond its maritime achievement, ‘Samudra Pradakshina’ also served as a powerful instrument of military diplomacy. During port calls across the globe, IASV Triveni showcased India’s rich cultural heritage, maritime traditions, military professionalism and enduring values while strengthening goodwill with friendly nations.

The expedition demonstrated India’s growing role in global maritime engagement and highlighted the spirit of unity, resilience and excellence embodied by its armed forces.

ANI