Advancing UK Aerospace, Defence, Security & Space Solutions Worldwide
  • Home
  • /
  • Space
  • /
  • Rocket Lab launches NanoAvionics satellite bus carrying NASA’s solar sail system

Space

Rocket Lab launches NanoAvionics satellite bus carrying NASA’s solar sail system

Kongsberg NanoAvionics has announced that the 12U nanosatellite bus it built for the in-orbit demonstration of NASA’s Advanced Composite Solar Sail System mission was successfully launched by Rocket Lab.

Image courtesy NASA

The satellite was launched onboard Electron 47 Light from a launch site in Mahia, New Zealand, opens on 24 April 2024 at 10:32 (NZT).

NASA’s technology demonstration aboard a NanoAvionics bus will test an 860 square foot (80 square meter) solar sail that uses light pressure acting on large reflective polymer sheets to provide propulsion for small satellites and test new deployable composite boom technologies for future space missions. The mission’s primary objective is to successfully demonstrate deployment of a new composite boom design. The booms are made from flexible polymer and carbon fibre materials that can be rolled and stowed very compactly, yet are stiffer and lighter than previous designs when fully deployed. The booms support and provide tension to four reflective polymer membrane 'sails'. When fully deployed, the team will perform a series of manoeuvres to measure the thrust performance of the solar sail.

Advertisement
ODU RT 2

The composite booms may also be used for building complex structures on the Moon or even Mars such as trusses for communications towers, surface shelters like hangars or very long antennas for rovers. Whereas the solar sail, if successful, could be the future low-thrust propulsion choice for cost-effective interplanetary science missions. Since solar sails require no propellant, they can essentially operate indefinitely and provide an alternative to conventional rocket propulsion for many long-duration missions.

The flight-proven 12U bus was assembled by NanoAvionics at its US facility while the integration of the payload was carried out at NASA’s Ames Research Center in California’s Silicon Valley, and NASA’s Langley Research Center in Hampton, Virginia. The 9U payload volume was necessary to host the 4.6 kg payload consisting of composite booms, polymer sails, the solar sail deployer mechanisms, deployment control electronics and onboard cameras to monitor the solar sail during and after deployment. During the entire demonstration phase, NanoAvionics engineers will provide NASA with operational support.

Advertisement
ODU RT 2

Žilvinas Kvedaravičius, CEO of NanoAvionics, said: “With the help of our satellite bus, this NASA mission is poised to advance the frontier of space exploration. Being entrusted with building the satellite bus for NASA’s state-of-the art mission is therefore a tremendous testimony to NanoAvionics technical capabilities, and to our quality and project assurance standards. The mission pushed the boundaries of our nanosatellite bus on several fronts and we carried those learnings onto our standard product line. As a result, we were able to improve both time to and time in space for other commercial, governmental, and research organisations.

Paul Frey, project manager on this mission at NanoAvionics, said: "Working with NASA to undertake the development of packing a solar sail into a 12U spacecraft presented both teams with numerous technical challenges. This mission is an important first step towards using solar propulsion for future deep space exploration."

Advertisement
L3Harris LB May IAMD L3Harris LB May IAMD
UK team to start work on world’s largest telescope

Space

UK team to start work on world’s largest telescope

16 May 2024

Engineers at the UK Astronomy Technology Centre (UK ATC) are to begin manufacturing the first instrument for the world-renowned Extremely Large Telescope (ELT).

Un-jammable quantum tech takes flight

Aerospace Defence Security Space

Un-jammable quantum tech takes flight

14 May 2024

In a commercial world-first, quantum navigation technology developed in the UK, supported through UKRI funding, has been successfully tested in flight.

UKSA funds satellite instruments to monitor climate

Space

UKSA funds satellite instruments to monitor climate

14 May 2024

The UK Space Agency (UKSA) has announced its largest investment into an early-stage technology programme to enhance the UK’s Earth observation technologies, to improve how space is used to understand and protect the planet.

New Space for All projects to inspire young people

Space

New Space for All projects to inspire young people

10 May 2024

The UK Space Agency will fund 15 projects across the UK designed to engage and inspire the next generation into STEM careers.

Advertisement
SPX Comms
Teledyne Space provides EarthCARE imaging instrumentation

Space

Teledyne Space provides EarthCARE imaging instrumentation

9 May 2024

UK imaging sensor manufacturer, Teledyne Space Imaging has provided the key imaging and sensor instrumentation for the EarthCARE satellite, an advanced Earth climate monitoring project scheduled to be launched into space in May 2024 and jointly implemented by the European Space Agency (ESA) and Japan Aerospace Exploration Agency (JAXA).

Space sustainability conference advances £1.8m for tech innovation

Space Events

Space sustainability conference advances £1.8m for tech innovation

8 May 2024

New funding from the UK Space Agency is backing technologies to help satellites measure our changing shorelines, estimate levels of biomass, predict weather forecasting and manufacture medicines in space.

Advertisement
Advanced Engineering RT