Antennas soak in the summer Sun in August 2026 at the
Deep Space Network’s Goldstone complex near Barstow, California, including the
recently completed Deep Space Station 23 (shown in the foreground, to the
right).
NASA/JPL-Caltech
NASA’s
Deep Space Network facility in California is marking the addition of a brand
new 34-meter-wide (114-foot-wide) radio frequency antenna to the agency’s deep
space communications and navigation system. The network uses giant dish
antennas located at three global facilities to support more than 40 spacecraft
exploring the solar system and interstellar space.
The new Deep Space Station 23 (DSS-23)
is located at the Goldstone Deep Space Communications Complex, near Barstow,
and is managed by NASA’s Jet Propulsion Laboratory in Southern California.
NASA leadership and personnel as well as
dignitaries gathered at the complete DSS-23 antenna for a ceremonial ribbon
cutting. It’s the latest to be added as part of the Deep Space Network’s Aperture
Enhancement Project, which began in 2009 to upgrade and expand the network by
adding six new 34-meter multifrequency beam-waveguide antennas. These versatile dishes can enhance many missions operating over
different radio frequencies.
“By expanding the Deep Space Network, we
are strengthening the communications foundation NASA needs for the bold
missions ahead — from exploring more of the Moon than ever before to peering
deeper into the solar system,” said James Kenyon, associate administrator of
the Research and Technology Mission Directorate at NASA Headquarters in
Washington. “This new antenna will help us deliver on our national goals for
space exploration and push beyond the limits of what once seemed impossible.”
After completing a testing campaign from
May through July to demonstrate its capabilities, the new DSS-23 began
operations on Aug. 3, tracking NASA’s Chandra X-ray Observatory. Since then, it has been communicating with dozens of missions such as
NASA’s Mars Reconnaissance Orbiter, Psyche, Juno, Voyager 1, and other robotic
spacecraft in deep space.
“The addition of this next-generation antenna brings us closer to a
completely modernized network that embraces advanced technology to ensure
NASA’s leadership in deep space communications,” said Dave Gallagher, director
of JPL. “After over 60 years of continuous operations supporting consequential
missions, these upgrades prime the network for a new era of exploration. The
teams that designed, planned, and built DSS-23 should be proud.”
Enhanced
capabilities
Construction of DSS-23 began in February 2020. After the 133-ton metal reflector framework
was placed and bolted atop the antenna’s pedestal in December 2024, engineers installed the
panels to the framework that reflect radio frequency signals transmitted to and
received from spacecraft. Then came the careful process of calibrating the
antenna so it can work in concert with the rest of the network.
It is the fifth antenna at
Goldstone (joining three 34-meter antennas and one 70-meter, or 230-foot,
antenna) and the fifth enhancement project antenna to join the network, which
includes antennas at the DSN’s Goldstone, Madrid, and Canberra, Australia, complexes.
Multifrequency beam waveguide antennas direct signals down to a stable,
climate-controlled underground room, rather than housing heavy, sensitive
electronic equipment on the moving antenna dish. In addition to offering
versatility, this design allows easy access for maintenance and upgrades to the
system.
“The biggest challenge wasn’t
actually constructing the antenna. It was transforming a complex collection of
mechanical, electrical, software, radio frequency, and infrastructure systems
into a single, mission-ready asset,” said Germaine Aziz, manager of the Deep
Space Network Aperture Enhancement Project at JPL. “Every subsystem must be
integrated, calibrated, and verified to operate with extraordinary precision
and reliability before it can support NASA’s deep space missions.”
The enhancement project will be
complete when a sixth enhancement-project antenna, Deep Space Station 33, comes online at the Canberra facility in 2029,
bringing the total number of 34-meter antennas across the network to 13. The
34-meter antennas can be arrayed (combined and operated together) to provide an equivalent
communications backup for each facility’s single 70-meter antenna, which, after
more than 50 years of near-continuous operation, are getting increasingly
costly to maintain and repair.
Managed by Caltech for NASA, JPL
manages the agency’s Deep Space Network with the oversight of NASA’s SCaN
(Space Communications and Navigation) Program within NASA’s Research and
Technology Mission Directorate. More than 100 NASA and non-NASA missions rely
on the Deep Space Network and Near
Space Network. They include missions that support astronauts aboard the International
Space Station and future Artemis missions, monitoring Earth, exploring the
Moon, and exploring the solar system and beyond.
For more information about the Deep Space Network, visit: https://www.nasa.gov/communicating-with-missions/dsn
Source: New Next-Gen Dish Adds Muscle to NASA’s Deep Space Network - NASA



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