Viasat and Rocket Lab Collaborate to Demonstrate Data Relay Services for LEO Satellites

Viasat and Rocket Lab Collaborate to Demonstrate Data Relay Services for LEO Satellites

Viasat, one of the global leaders in satellite communications, announced it selected Rocket Lab USA, a leading launch and space systems company, to support Viasat’s hybrid space communications networks demonstrations by producing a spacecraft bus and providing mission operation support. The demonstrations will make evident Viasat’s portfolio of multi-band, space-based relay communication services in support of Low Earth Orbit (LEO) space missions with substantial flexibility in managing data, with lower data latency and higher throughput in real-time.

The demonstrations are part of Viasat’s work across two awards, totaling $80 million, under NASA’s Communications Services Project (CSP), which is evaluating commercial satellite communications services and technologies to support NASA near-Earth communications requirements as it sunsets the Tracking and Data Relay Satellite System (TDRSS).

LEO satellites typically require direct line-of-sight to a ground station to communicate, introducing significant data latency into the mission operations. Viasat’s Ka- and L-band relay solutions are designed to address this challenge with near real-time, low-data latency communications. The Real-Time Space Relay (RTSR) space-qualified Ka-band terminal will use Viasat’s high-capacity Ka-band network of satellites in geostationary orbit (GEO) to enable LEO operators on-demand access to critical mission data. The InCommand system will use Viasat’s global L-band network to provide real-time telemetry, tracking, and command (TT&C) operations at any point in the spacecraft’s orbit. Rocket Lab will also provide a new L-band radio for InCommand called Frontier, which will support demonstrations of various TT&C applications.

Scheduled to launch in early 2026, the demonstration mission will also include direct-to-ground communications through Viasat’s Real-Time Earth (RTE) Ground-Station-as-a-Service for S-, X-, and Ka-bands. All transports will be integrated through Viasat’s Integrated Space Access Network (ISAN) to show the benefits of adaptable transport, giving LEO operators the ability to access data while balancing network availability, cost, and time-sensitive applications.

“We are proud to support NASA with this critically needed real-time space relay communications capability and excited about our continuing partnership with Rocket Lab to support Viasat’s growing space missions portfolio,” said Michael Maughan, Vice President of Space and Mission Systems, Viasat Government Systems. “From Earth observation and scientific missions to supporting defense operations, we designed our space relay services to be a highly flexible, cost-effective, and scalable solution for both government and commercial LEO operators to transport data based on application and mission needs.”

Rocket Lab Vice President of Space Systems, Brad Clevenger, said: “Rocket Lab spacecraft are built on configurable, high-performance subsystems based on constellation-class manufacturing. By providing a configurable platform that can be tailored to suit even the most complex missions, our customers can focus on their own novel hardware and services and leave the development and operation of the spacecraft to us. We look forward to supporting Viasat on the NASA CSP mission, as it will also add responsive satellite communications capabilities to our configurable platform.”

The Rocket Lab spacecraft will provide the power, communications, propulsion, and attitude control for the mission demonstration. Rocket Lab will incorporate its own satellite components and sub-systems into the spacecraft including star trackers, reaction wheels, solar panels, S-band radios, flight software and ground software, and the new L-band radio in development for the future InCommand service.

Click here to learn more about Viasat's Real-Time Space Relay.

Click here to learn about Rocket Lab's Satellite Components listed on SatNow.

Publisher: SatNow

GNSS Constellations - A list of all GNSS satellites by constellations

beidou

Satellite NameOrbit Date
BeiDou-3 G4Geostationary Orbit (GEO)17 May, 2023
BeiDou-3 G2Geostationary Orbit (GEO)09 Mar, 2020
Compass-IGSO7Inclined Geosynchronous Orbit (IGSO)09 Feb, 2020
BeiDou-3 M19Medium Earth Orbit (MEO)16 Dec, 2019
BeiDou-3 M20Medium Earth Orbit (MEO)16 Dec, 2019
BeiDou-3 M21Medium Earth Orbit (MEO)23 Nov, 2019
BeiDou-3 M22Medium Earth Orbit (MEO)23 Nov, 2019
BeiDou-3 I3Inclined Geosynchronous Orbit (IGSO)04 Nov, 2019
BeiDou-3 M23Medium Earth Orbit (MEO)22 Sep, 2019
BeiDou-3 M24Medium Earth Orbit (MEO)22 Sep, 2019

galileo

Satellite NameOrbit Date
GSAT0223MEO - Near-Circular05 Dec, 2021
GSAT0224MEO - Near-Circular05 Dec, 2021
GSAT0219MEO - Near-Circular25 Jul, 2018
GSAT0220MEO - Near-Circular25 Jul, 2018
GSAT0221MEO - Near-Circular25 Jul, 2018
GSAT0222MEO - Near-Circular25 Jul, 2018
GSAT0215MEO - Near-Circular12 Dec, 2017
GSAT0216MEO - Near-Circular12 Dec, 2017
GSAT0217MEO - Near-Circular12 Dec, 2017
GSAT0218MEO - Near-Circular12 Dec, 2017

glonass

Satellite NameOrbit Date
Kosmos 2569--07 Aug, 2023
Kosmos 2564--28 Nov, 2022
Kosmos 2559--10 Oct, 2022
Kosmos 2557--07 Jul, 2022
Kosmos 2547--25 Oct, 2020
Kosmos 2545--16 Mar, 2020
Kosmos 2544--11 Dec, 2019
Kosmos 2534--27 May, 2019
Kosmos 2529--03 Nov, 2018
Kosmos 2527--16 Jun, 2018

gps

Satellite NameOrbit Date
Navstar 82Medium Earth Orbit19 Jan, 2023
Navstar 81Medium Earth Orbit17 Jun, 2021
Navstar 78Medium Earth Orbit22 Aug, 2019
Navstar 77Medium Earth Orbit23 Dec, 2018
Navstar 76Medium Earth Orbit05 Feb, 2016
Navstar 75Medium Earth Orbit31 Oct, 2015
Navstar 74Medium Earth Orbit15 Jul, 2015
Navstar 73Medium Earth Orbit25 Mar, 2015
Navstar 72Medium Earth Orbit29 Oct, 2014
Navstar 71Medium Earth Orbit02 Aug, 2014

irnss

Satellite NameOrbit Date
NVS-01Geostationary Orbit (GEO)29 May, 2023
IRNSS-1IInclined Geosynchronous Orbit (IGSO)12 Apr, 2018
IRNSS-1HSub Geosynchronous Transfer Orbit (Sub-GTO)31 Aug, 2017
IRNSS-1GGeostationary Orbit (GEO)28 Apr, 2016
IRNSS-1FGeostationary Orbit (GEO)10 Mar, 2016
IRNSS-1EGeosynchronous Orbit (IGSO)20 Jan, 2016
IRNSS-1DInclined Geosynchronous Orbit (IGSO)28 Mar, 2015
IRNSS-1CGeostationary Orbit (GEO)16 Oct, 2014
IRNSS-1BInclined Geosynchronous Orbit (IGSO)04 Apr, 2014
IRNSS-1AInclined Geosynchronous Orbit (IGSO)01 Jul, 2013