HomeManeuver TrackerClose ApproachesYAOGAN-30 R ⟷ MUSAT3
high · CROSS-BORDER
8.32 kmmiss distance
Closest approach (TCA)
2026-09-18 10:32 UTC
Relative speed
8.00 km/s
Altitude
Current separation
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On 2026-09-18 10:32 UTC, CN YAOGAN-30 R and US MUSAT3 reached a closest approach (TCA) of 8.32 km, with a relative velocity of 8.00 km/s. This is a cross-border encounter between objects of different nations, the kind of event closely watched for space-security implications. Miss distance and time of closest approach are computed by propagating the latest published orbital elements for both objects, and values update as new element sets are published. See the Satellite Maneuver Tracker for the live picture and space situational awareness for context.

Why it mattersBoth objects are catalogued as payloads. Screening continues as new element sets arrive; operators act on their own conjunction data.

The Two Objects

Dossiers from the satellite directory
NORAD 45460
CountryPRC
Launched2020-03-24
COSPAR2020-021A
Maneuver capableUnknown
MUSAT3Payload
NORAD 64573
CountryUS
Launched2025-06-23
COSPAR2025-135AX
Maneuver capableUnknown

Where This Happens

Altitude context
DEBRIS BELT 700–1000 KM2006001,0001,5002,000 kmTHIS PASS · 556 KMISS 420Starlink 550

At 556 km this pass sits in low Earth orbit. Objects here stay up for decades: there is too little atmospheric drag to clean the band naturally. Why crowded bands matter →

History Between This Pair

1 recorded pass under 10 km
Pair history · YAOGAN-30 R ⟷ MUSAT3
Now8.32 km8.00 km/s556 kmThis page

Repeat encounters are common for objects in near-intersecting orbital planes; each pass is re-screened as fresh element sets arrive.

These Objects Elsewhere

Other screened approaches · 7 days
3.13 km09-18 00:30 UTC
COSMOS 2609MUSAT3
7.27 km09-17 19:09 UTC
YAOGAN-30 RCENTAURI-6
9.70 km09-18 10:54 UTC
COSMOS 2503MUSAT3

How These Numbers Are Computed

Miss distance and TCA come from propagating the latest published orbital elements for both objects and searching for the minimum separation over the screening window. Element sets carry kilometre-scale uncertainty, so figures here describe a close pass, not a collision prediction; a change in either object's published elements re-computes the pass automatically. What is a conjunction? → How conjunction assessment works →

Cite this encounter: Orbital Radar — “YAOGAN-30 R ⟷ MUSAT3: 8.32 km close approach”, https://orbitalradar.com/conjunction/45460-64573 (accessed 2026-09-17).