Goldstone Solar System Radar
The Goldstone Solar System Radar (GSSR) is a large radar system used for investigating objects in the Solar System, a field called radar astronomy. Located in the desert near Barstow, California, it comprises a 500-kW X-band (8500 MHz) transmitter and a low-noise receiver on the 70-m DSS 14 antenna at the Goldstone Deep Space Communications Complex. It has been used to investigate Mercury, Venus, Mars, the asteroids, and moons of Jupiter and Saturn.
Also recorded as Goldstone radar · GSSR
Goldstone Solar System Radar

JPL Images and Videos: Images of the Deep Space Network Goldstone, California · Public domain
- Region
- United States
VALÉORINE Encyclopedia
VALÉORINE documentary reading
Documentary summary
The Goldstone Solar System Radar (GSSR) is a large radar system used for investigating objects in the Solar System, a field called radar astronomy. Located in the desert near Barstow, California, it comprises a 500-kW X-band (8500 MHz) transmitter and a low-noise receiver on the 70-m DSS 14 antenna at the Goldstone Deep Space Communications Complex. It has been used to investigate Mercury, Venus, Mars, the asteroids, and moons of Jupiter and Saturn.
Admitted source layer · organised and presented by VALÉORINE
Reference Check
Propose documentary evidence for Goldstone Solar System Radar. A contribution is never written directly as fact: identity, source, rights and evidence gates still decide.
Sign in to contribute
World of VALÉORINE
Documentary connections
Only confirmed graph relationships appear here. Images are shown only when their identity and reuse rights both pass the documentary gate.
Documentary evidence
Documentary basis
Authority files
wikidata · Q21593060 · wikipedia · Goldstone Solar System Radar
In this article
Planetary observations
Planetary observations
The solar system radar is only active a small percentage of the time, as the 70 meter antenna is primarily used for tracking and communicating with spacecraft as part of the NASA Deep Space Network.
GSSR can work in two different modes. In the monostatic radar mode, GSSR both transmits and receives. In bistatic mode, GSSR transmits and other radio astronomy facilities receive. Although more difficult to schedule, this offers two advantages - the transmitter does not need to turn off to allow the receiver to listen, and it allows the use of interferometry to extract more information from the reflected signal. Since the GSSR takes about 5 seconds to switch from transmit to receive, nearby targets must necessarily use bistatic mode. Bodies that have been investigated using GSSR include: • Mercury: In particular, by watching specific reflected features of Mercury sweep across the Earth's surface (using spatially separated receivers), GSSR enables the pole position to be computed quite accurately. The measured librations show Mercury has a liquid core. • Venus • Mars: GSSR was used extensively to characterize sites for Mars landers. • Asteroids: Small asteroids appear only as unresolved points of light in ground-based optical telescopes. Radar, however, can image near-Earth asteroids and comets with a resolution of several meters. For example, the asteroid 4179 Toutatis was imaged in 1992, 1996, 2000, 2004, 2008, and 2012. Although spacecraft such as Dawn can image particular asteroids in much finer detail, radar astronomy can investigate many more asteroids of different characteristics. For example, most existing images of binary asteroids were obtained through radar astronomy. • Moons of Jupiter • Rings and moons of Saturn • Illustration — 4179 Toutatis in 1996 • Illustration — (53319) 1999 JM8 in 1999 • Illustration — (308635) 2005 YU55 in 2011 Upcoming asteroid observations can be found online at the Goldstone Asteroid Schedule.
Other scientific uses
Other scientific uses
• Recovery of the Solar and Heliospheric Observatory after loss of attitude control. • Investigation of orbital debris around Earth.
Similar facilities
Similar facilities
The GSSR is the only planetary radar in current regular operation. Others are or were: • The planetary radar at Arecibo Observatory, which collapsed in 2020. • The Soviet planetary radar at the Pluton complex, since dismantled. • The Millstone Hill and Haystack radio telescopes of the Haystack Observatory made radar observations from 1958 through at least 1970. • The Yevpatoria RT-70 radio telescope is equipped with a powerful transmitter, and has been used in bi-static radar observations. There are proposals and prototypes for possible additional radars: • The Green Bank Observatory is investigating a Ku-band radar for its 100-meter radio telescope. Its low power prototype has imaged the moon. • China is developing a planetary radar. Their initial phase has imaged the moon.
Places
Named by the record
Places
Only places the record itself states, plotted where the house gazetteer settles their coordinates. Nothing is inferred from a name or a nationality.
- United States
Primary material
Documents and archives
authority record
- Wikidata, structured authority record Q21593060: Goldstone Solar System Radar
General reference · Wikidata
reference work
- “Goldstone Solar System Radar”, English Wikipedia, consulted as further reading
Reputable secondary · Wikipedia
Notes from the source article
Cited by Wikipedia
Notes from the source article
These works are cited by the source article, in its own numbering. They are recorded as its citations, not as sources VALÉORINE has verified.
- 1.Latifiyan, Pouya. Space Telecommunications, how?. Take off. Civil Aviation Technology College. 1. 15. April 2021.
- 2.Goldstone Solar System Radar (GSSR) Learning Manual.
- 3.Williams, Matt. How Long is a Day on Venus? We Finally Know the Exact Answer. Universe Today. 4 May 2021.
- 4.Brozović, Marina. Goldstone Radar Observations of Horseshoe-orbiting Near-Earth Asteroid 2013 BS45, a Potential Mission Target. The Astronomical Journal. 157. 1. 24. 27 December 2018. 10.3847/1538-3881/aaf04f.
- 5.Lawrence, Kenneth J. Arecibo and Goldstone radar images of near-Earth Asteroid (469896) 2005 WC1. Icarus. 300. 12–20. January 2018. 10.1016/j.icarus.2017.08.028.
- 6.Goldstone Asteroid Schedule.
- 7.David, Leonard. Saving SOHO. Aerospace America. 66. May 1999.
- 8.Virkki, Anne K. Planetary radar—State-of-the-art review. Remote Sensing. MDPI. 15. 23. 5605. 2023. 10.3390/rs15235605.
- 9.Evans, JV. The Haystack Planetary Ranging Radar. Technical Report-Jet Propulsion Laboratory, California Institute of Technology. Jet Propulsion Laboratory, California Institute of Technology. 32. 27. 1970.
- 10.BISTATIC RADAR TEST ACTIVITIES AT THE ITALIAN MEDICINA RADIOTELESCOPES.
- 11.The next generation planetary radar system on the Green Bank Telescope.
- 12.China begins construction on world's most far-reaching radar system, to boost defense against near-Earth asteroid impact.
References
Citations
References
Each reference names the institution holding it, so a reader may go to the document itself.
authority record
Secondary witnessreference work
Secondary witness
The Encyclopedia exists whether or not anything is for sale. Corrections are recorded rather than overwritten, and every version of this record is kept. Published 16 August 2026.
Elsewhere in Scientific instruments
736 published records in this field, each with its sources named.
- Global-scale Observations of the Limb and DiskTerminology
- Globe of MatelicaTerminology
- Goddard High Resolution SpectrographTerminology
- Göktürk-3Terminology
- Goldstone-Apple Valley Radio TelescopeTerminology
- Goode Solar TelescopeTerminology
- Gornergrat Infrared TelescopeTerminology
- gradiometerTerminology
Best supported in this field
For owners
Own an object connected with Goldstone Solar System Radar?
A specialist will read what you send and tell you what the house can establish, what it cannot, and whether the object is suited to sale. There is no charge and no obligation. The object stays with you throughout; nothing is shipped to us unless it is arranged in writing beforehand.