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Wed, Dec 18, 2024
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EU Secures €10.6 Billion Deal for Sovereign Satellite Constellation

Praveen Paranjothi1 min read
EU Secures €10.6 Billion Deal for Sovereign Satellite Constellation

The European Union has taken a major leap towards digital sovereignty with the signing of a €10.6 billion ($11.1 billion) contract for its IRIS² satellite constellation. This ambitious project, set to rival Elon Musk's Starlink, will deploy nearly 300 satellites into orbit by 2030, providing secure and high-speed communications across Europe and beyond.


Led by the SpaceRISE consortium, which includes major players like SES, Eutelsat, and Hispasat, IRIS² represents a significant milestone in Europe's space strategy. The multi-orbital design, combining low Earth orbit (LEO) and medium Earth orbit (MEO) satellites, aims to offer low-latency communications and global coverage without the need for thousands of satellites.


IRIS² will incorporate advanced technologies such as optical intersatellite links, software-defined payloads, and quantum key distribution for enhanced security. The system is designed to be scalable, providing data rates from tens of MB/s to tens of GB/s, and will ensure 100% pole-to-pole coverage.


This project not only strengthens Europe's technological independence but also aims to foster collaboration between industry and public sectors. With the European Commission as an anchor customer, IRIS² is poised to play a crucial role in safeguarding European values, increasing competitiveness, and ensuring secure communications for governmental and commercial purposes.


As the first services are expected to be operational by 2030, the IRIS² constellation stands as a testament to Europe's commitment to digital sovereignty and its ambition to be a key player in the global space economy.

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Hyderabad-based Skyroot Aerospace successfully launched Vikram-1, India’s first privately developed orbital launch vehicle, from the Satish Dhawan Space Centre in Sriharikota on July 18, 2026. The rocket lifted off at 12:05:30 p.m. Indian Standard Time as part of Mission Aagaman, meaning “arrival.”Around 15 minutes after launch, Vikram-1 successfully deployed payloads into a low Earth orbit at an altitude of approximately 450 kilometres. ISRO confirmed that two satellites—Skyroot’s SCOPE and a satellite from Grahaa Space—were injected into orbit. Other payloads remained attached to the upper stage to conduct in-orbit experiments.India has operated orbital launch vehicles through the Indian Space Research Organisation since the successful launch of the Rohini satellite aboard SLV-3 in 1980. 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The rocket also incorporates carbon-composite structures, avionics and thermal-protection technologies developed by Skyroot.The Vikram launch-vehicle series is named after Vikram Sarabhai, the scientist widely regarded as the father of India’s space programme.Skyroot is positioning Vikram-1 as a dedicated and rideshare launcher for small satellites requiring customised orbital deployment. The company argues that such missions can provide customers with greater control over launch timing and orbital destination than travelling as secondary payloads on larger rockets.Payloads and ExperimentsThe mission carried multiple customer payloads and in-orbit experiments from Indian and international organisations.ISRO has officially confirmed that two satellites, SCOPE and Grahaa, were successfully placed into low Earth orbit. The remaining payloads were carried on the upper stage for in-orbit experiments.Before launch, the announced mission manifest included:Skyroot’s SCOPE satelliteGrahaa Space’s SOLARAS S3 satelliteA technology demonstration from German space company DCUBEDEmbrace, a robotic arm experiment developed by Cosmoserve Space for orbital-debris captureThe announced manifest also included symbolic payloads: a floral-shaped artwork called Cosmic Bloom and a miniature 18-karat gold rocket honouring Indian scientific figures C.V. Raman, Vikram Sarabhai and A.P.J. Abdul Kalam. These items were listed before launch, but official post-launch statements have not separately confirmed the operational status of every individual experiment.Mission Aagaman was intended to test Vikram-1’s propulsion, avionics, telemetry, stage separation, guidance, navigation and control systems under actual flight conditions. Skyroot described the flight as the first of a planned series of development missions ahead of routine commercial operations.From Vikram-S to Vikram-1Skyroot Aerospace was founded in 2018 by former ISRO engineers Pawan Kumar Chandana and Naga Bharath Daka.The company completed its first spaceflight in November 2022 with Vikram-S, a suborbital technology-demonstration rocket launched under Mission Prarambh. That flight made Skyroot the first private Indian company to launch a rocket into space from Indian soil, although Vikram-S did not enter orbit.Vikram-1 represents a significantly more demanding technical achievement. Reaching orbit requires a rocket not only to climb above Earth’s atmosphere but also to accelerate its payload to the horizontal velocity needed to remain in orbit. The vehicle must complete a carefully timed sequence of propulsion, stage-separation and navigation operations before deploying its payloads.India opened more of its space sector to private participation in 2020 and subsequently established a framework through IN-SPACe for private companies to access ISRO facilities and technical expertise. For Vikram-1, ISRO supported solid-motor casting and testing, liquid-engine testing, vehicle integration, trajectory analysis and launch-pad operations.Reaction and Next StepsPrime Minister Narendra Modi called the successful launch a defining moment in India’s space journey. He said growing private-sector participation was opening new frontiers and accelerating innovation, adding that the achievement would encourage young people to “dream bigger and innovate fearlessly.”Skyroot said Mission Aagaman was a test flight and that it expects to conduct additional development flights before beginning routine commercial launches. 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