DARC: The Space Force Picks Texas for Its Last Deep-Space Radar

by | Sep 14, 2026 | Noticias | 0 comments

Geostationary orbit is 36,000 km up, which is far enough that the satellites parked there appear not to move at all. It is where the most valuable military hardware in space lives: communications relays, missile-warning satellites, intelligence platforms. It is also, historically, very difficult to watch.

On 9 September the US Space Force named Lake Kickapoo in Archer County, Texas, about 120 miles north-west of Fort Worth, as its preferred location for the third and final site of the Deep Space Advanced Radar Capability. Pending approvals, DARC will then have eyes on the entire geostationary belt, all day, in any weather.

The announcement came six days after Gen. Douglas A. Schiess was sworn in as Chief of Space Operations, making it one of the first pieces of news of his tenure.

Datos rápidos

Anunciado: 9 September 2026, US Space Force

Site: Lake Kickapoo, Archer County, Texas, around 120 miles north-west of Fort Worth

Programa: Deep Space Advanced Radar Capability, a trilateral US, UK and Australian effort under a 22-year memorandum signed in 2023

Prime contractor: Northrop Grumman

Other sites: Exmouth, Western Australia, complete December 2024. Cawdor Barracks, Pembrokeshire, Wales, still preferred location pending planning approval

What it sees: Very small objects out to geostationary distance, roughly 36,000 km

Fondos: 442 million dollars requested for financial year 2027, plus 1.6 billion dollars through 2031

Cronología: Contract award and construction from 2027, civil works complete 2029, operational acceptance 2030

Why radar rather than telescopes

The existing system for watching deep space, GEODSS, is optical. It uses telescopes, which means it cannot see through cloud and cannot work in daylight. A radar does not care about either. DARC is designed to give continuous coverage with greater sensitivity, better accuracy and faster tracking than existing radars that can reach geostationary altitude, and to do it against smaller objects than anything currently fielded can resolve at that range.

The engineering approach is worth noting because it is not obvious. Rather than build one enormous dish, DARC combines multiple smaller arrays that function together as a single large aperture, a concept demonstrated at White Sands in 2021. Across the finished network there will be something like 27 parabolic antennas.

A DARC transmit antenna at Site 1 in Western Australia at night
A transmit antenna at DARC Site 1 in Western Australia. The Australian site was completed in December 2024, three months ahead of schedule. Photo: Doug Humphries, BAE Systems.

Three sites are needed because one country cannot see the whole sky. Australia, Britain and the United States between them provide the geometry for overlapping, uninterrupted, 360-degree coverage of the geostationary belt. That is the entire reason the programme is trilateral rather than American.

“Selecting Texas as the preferred location for the final DARC site keeps us on track to deliver a truly global deep-space sensing network with our closest allies.”
Gen. Douglas A. Schiess — Chief of Space Operations, US Space Force, 9 September 2026

What it is actually for

The official language is careful. The Space Force talks about a contested domain, about characterising manoeuvres, about attributing malign activity from irresponsible actors, and about mitigating debris events. It does not name anybody. That restraint is worth preserving when reporting it: the release does not say China, and it does not say Russia.

What the capability does is nonetheless clear enough. If an object in geostationary orbit changes position, DARC is designed to notice, at night, through weather, and to say what moved and where it went. Objects at that altitude have historically been able to manoeuvre with a reasonable expectation that nobody was watching closely.

“The full DARC network will give operators a more persistent and responsive ability to detect and track activity in deep space.”
Col. Barry Croker — Commander, Mission Delta 2, US Space Force, 9 September 2026

Northrop Grumman’s own overview of the DARC programme and how the distributed array concept works.

The site that nearly did not happen

The third site came close to being cut. In 2025 the Space Force considered dropping it as part of a change in acquisition strategy, and the financial year 2027 budget request restored it. That request now funds the programme through completion.

The timeline has also moved forward rather than back, which is unusual. The Government Accountability Office had previously reported operational acceptance in 2032; the Space Force is now targeting 2030 for Texas. Network-wide dates remain unsettled across official sources, and the Welsh site at Cawdor Barracks is still only a preferred location awaiting planning approval, so the full picture is not fixed yet.

There is a pleasing historical symmetry to the location. Lake Kickapoo already hosted a two-mile transmitter array for the old Air Force Space Surveillance System, the original Space Fence. The site has been listening to things above Texas for a very long time.

Sources: US Space Force and Air Force News Service; Air & Space Forces Magazine; Space Systems Command; Northrop Grumman.

Preguntas frecuentes

What is the Deep Space Advanced Radar Capability?
DARC is a ground-based radar network being built by the United States, United Kingdom and Australia under a 22-year agreement signed in 2023. Three sites will give continuous, all-weather coverage of the geostationary belt roughly 36,000 km above Earth. Northrop Grumman is prime contractor.
Where are the DARC radar sites?
Site one is at Exmouth in Western Australia and was completed in December 2024. Site two is planned for Cawdor Barracks in Pembrokeshire, Wales, still awaiting planning approval. Site three was announced on 9 September 2026 as Lake Kickapoo in Archer County, Texas.
Why does the Space Force need a deep space radar?
The existing GEODSS system uses optical telescopes, which cannot see through cloud or operate in daylight. Radar works continuously in any weather. DARC offers greater sensitivity and faster tracking against smaller objects at geostationary distance than current radars can manage.
When will the DARC network be operational?
The Texas site is targeted for operational acceptance in 2030, with contract award and construction starting in 2027 and civil works complete in 2029. Network-wide completion dates vary between official sources and the Welsh site is not yet finally approved.
How much does DARC cost?
The financial year 2027 budget request includes 442 million dollars for the programme, with a further 1.6 billion dollars through 2031. The third site was nearly cancelled in 2025 during an acquisition strategy review before being restored in the 2027 request.
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