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NASA
Selects Blue Origin as Mars
Telecommunications Network Provider
by Jessica Taveau
NASA awarded Blue
Origin a contract Tuesday to develop the
agency’s Mars Telecommunications
Network, a next-generation
communications system that will enable
reliable, high-bandwidth communications
and navigation services for current and
future Mars missions.
The
firm-fixed-price contract has a maximum
potential value of approximately $700
million to deliver a high-performance
Mars telecommunications orbiter to NASA
no later than Dec. 31, 2028.
Blue Origin will
design, develop, integrate, launch, and
operate the network as a part of the
agency’s broader space communications
and navigation infrastructure. The
architecture will consist of a
high-performance telecommunications
spacecraft orbiting Mars, transmitting
science data, imagery, navigation
information, and critical mission
communications for spacecraft operating
on and around the planet.
The award marks a
milestone in NASA’s strategy to expand
communications and navigation services
beyond Earth and the Moon, establishing
the foundation for sustained exploration
of Mars in the coming decades.
Under the Artemis
program, NASA is sending astronauts to
explore the Moon and prepare for
missions to Mars. Robotic missions will
pave the way for human exploration of
the Red Planet, and as these missions
expand, demand for data will continue to
increase. To meet this need, NASA is
pursuing a purpose-built network capable
of supporting a growing number of
missions while providing greater
capacity, reliability, and operational
flexibility.
The selection
follows NASA’s request for proposal
issued in May. As the agency
increasingly taps commercial partners
for transportation and communications
services in Earth orbit and to develop
the Moon Base, the Mars
Telecommunications Network initiative
similarly seeks to harness
private-sector capabilities while
enabling NASA to focus on exploration
and scientific discovery.
The network,
managed by NASA’s Space Communications
and Navigation program, is expected to
be operational at Mars by 2030 and will
support both current and future missions
to the Red Planet, as NASA ventures
deeper into space.
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