@COMSPOC_OPS

COMSPOC's Operations Team | Technical experts in orbital analysis, maneuver detection, and near real-time space tracking | Advancing Space Domain Awareness.

Exton, PA
Joined September 2024
USA 325 (SSC.51281) reaches China's TJS-23 (SSC.67226) — its third stop of 2026 After bracketing the Shijian-29A/B pair at 73°E alongside USA 324 in March, then settling in with Russia's COSMOS 2589 at 97.9°E through the spring, USA 325 has crossed the belt to the Western Pacific. COMSPOC sensor data and orbit determination show a familiar profile: departure burns on 3–4 July broke USA 325 out of the 97.9°E slot into a ~3.1°/day eastward drift. Three weeks of unpowered coasting later, several maneuvers between 23 July and 8 August braked the drift near 169°E and walked it into TJS-23's neighborhood at 175.5°E. TJS-23 launched on a CZ-5 from Wenchang in December 2025 and has held 175.5°E ± 0.2° ever since reaching GEO. Officially a communication technology test satellite, it is widely assessed as a SIGINT mission and the slot fits: the footprint from 175.5°E covers the Western and Central Pacific, including major U.S. test ranges and operating areas. With ~6° between their orbit planes, USA 325 crosses TJS-23's plane every 12 hours, and close approaches come at those crossings. The first: 10 August, 22:35 UTC at 14 km, visualized below. Two more have followed so far. Three approaches in 36 hours is the tell. We'll continue monitoring in the coming days. @planet4589 @shell_jim @IntegrityISR @SpaceNews_Inc @ObservableSpace #space #satellite
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Want to see SJ-31 for yourself? We've dropped its orbit into Spacebook, COMSPOC's free, internet-based platform for visualization and download of SSA data. It puts the entire tracked catalog on an interactive 3D globe — so you can watch SJ-31 sweep the GEO belt in real time and explore everything else up there, too! spacebook.com/explorer?story…
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Shijian-31: a satellite with an orbit we have never seen before China launched Shijian-31 on June 16 from Xichang, officially described as a "space environment detection" mission. The orbital elements suggest more going on. The inclination 63.46° sits at the value where perigee advance goes to zero. Anyone who's tracked Molniya-class satellites will recognize that immediately. But the resemblance stops there. A classic Molniya parks its apogee over high northern latitudes and dwells for hours, that's the whole design premise. SJ-31's argument of perigee is 171°, which puts perigee near the equator and its apogee on the opposite side. (Image 1: SJ-31 at 171° argument of perigee vs. a generic Molniya at 270° argument of perigee.) So the long dwell isn't over any particular latitude — it's over altitude. Apogee reaches ~39,900 km, about 4,100 km above the operational GEO belt where comms and missile-warning satellites sit. Nearly a third of each 12.5-hour orbit is spent above that shell, crossing it twice per pass at a steep 63° angle. (Video 1: SJ-31's orbit visualized with example GEO assets.) It's also not fixed on one region. The period is just off a clean repeating ground track, so the sub-apogee point slowly drifts around the globe — sweeping past every longitude roughly once every 24 days. Net effect: an orbit that periodically looks down on the entire GEO belt from above, at an angle, on a rotating schedule, rather than fixating on one target. What's it actually doing up there? @SpaceNews_Inc @BreakingDefense @joroulette @shell_jim @planet4589 @IntegrityISR
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🛰️USA 325 (SSC.51281) and COSMOS 2589 (SSC.64467) — unexpected neighbors With no public orbital data on USA 325 since 6 January 2026, our team turned to COMSPOC's own sensor data to run a pattern-of-life analysis on intriguing behavior of the two. From 25 May to 25 June, we identified the pair lingering at 97.9°E, with separation ranging from 20 to 400 km. COSMOS 2589 performed more than 20 maneuvers and USA 325 performed more than 10, resulting in 20+ conjunctions below 50 km (closest 5.8 km). Check out our collaboration with @GillingerGreg in issue 148 of The Integrity Flash. And the story hasn't paused. From 26 June through 15 July, we tracked more than 15 additional maneuvers from COSMOS 2589, and more than 1 from USA 325 leading to 10+ more conjunctions within 30 km (closest 11.2 km). Both still remain co-located at 97.9°E. Lighting at closest approach strongly favored USA 325 imaging COSMOS 2589, yet the Russian satellite's photometric values repeatedly shifted around those passes. The cause isn't definitive, but the timing could suggest operators adjusting its attitude to hide certain sides from view. Also in the neighborhood, Chinasat 11 (SSC.39157) has maintained its longitude of 97.9° for 2.5+ years giving it an awesome view right in the middle of the action. With additional interesting objects headed to GEO, we'll be watching whether USA 325 holds its position or moves on. #space #satellite @COMSPOC Watch our full analysis below 👇
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🛰️ Russian satellites approaching ICEYE: a closer look at the timeline. Tracking data via @LeoLabs_Space . Analysis via COMSPOC SSA. On April 16, Russia launched six maneuverable satellites (Cosmos 2609-2614) from Plesetsk. Five of them — Cosmos 2610, 2611, 2612, 2613, and 2614 — now share the same orbital plane as ICEYE-X36, X37, and X38, all phased out along the orbit. Since then, three Cosmos satellites have made close approaches to ICEYE-X36: May 15: Cosmos-2613 raises inclination May 17 (~48 hrs later): Cosmos-2613 passes ICEYE-X36 at 3.86 km, then 4.73 km May 21+: Cosmos-2614 raises inclination by ~0.82° May 26: Cosmos-2609 passes ICEYE-X36 at 2.54 km May 29: Cosmos-2614 passes ICEYE-X36 at 16 km, then 46.8 km The pattern is notable — inclination changes followed by close passes within days. COMSPOC's MAS (Mission Awareness Services) toolkit indicates that COSMOS 2612 could intercept ICEYE-X36 with a delta V of 4.4 m/s and COSMOS 2614 could perform proximity operations with ICEYE-X37 with a 48.0 m/s delta V, assuming a timespan of one day if the maneuver occurs on July 16. (See chart below) Context: ICEYE is a Finnish company operating a SAR constellation that provides all-weather, day/night imagery. Since August 2022, one ICEYE satellite has been supplying Earth observation data to Ukraine — which specific satellite is not publicly known. Ukraine also has access to the wider ICEYE constellation. At ranges under 5 km, possible missions could include close inspection, electronic warfare (support/attack), or intelligence gathering. The intent remains unclear, but the pattern of deliberate maneuvers followed by close approaches is worth watching. @SpaceNews_Inc @SpaceflightNow @BreakingDefense #Russia #Ukraine #ICEYE #Counterspace #SSA
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COMSPOC_OPS retweeted
We’re pleased to welcome our 2026 summer interns to COMSPOC. This group brings a range of skills, perspectives, and interests to their work with COMSPOC: 🔹 Satvik Agrawal – @LifeAtPurdue 🔹 Marina Anderson – @UVA 🔹 Sean Bohne - @LifeAtPurdue 🔹 Dylan Cave – @cwru 🔹 Michael Dougherty – @CatholicUniv 🔹 Kaitlyn Hess – @UofMaryland 🔹 Ethan Poley – @penn_state 🔹 Samantha Resneck – @penn_state 🔹 Dhruv Sharma – @LifeAtPurdue Recent Conestoga HS graduates 🔹 Juanita Bhatia 🔹 Ridhima Parnati They’ll work alongside our team and gain practical experience in our space situational awareness software and operations. Welcome to COMSPOC!
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Impressive visit to @COMSPOC in Exton. COMSPOC is helping advance space domain awareness and keep America ahead in a rapidly changing world. Pennsylvania is leading the way in our nation’s defense industry — and that includes the next frontier: space.
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🛰️ GEO MANEUVER EVENT: USA 324 trails China's SJ-29 pair to new longitude For the first time since insertion into GEO following their December 2025 launch, SJ-29A & SJ-29B executed relocation burns. USA 324 (GSSAP-5) didn't let them go unescorted. SJ-29A & SJ-29B launched to 73.02°E and 73.12°E in late 2025, and since then both objects have remained largely stationary, exhibiting only a slow natural eastward drift. By May 27th, both had reached new longitudes of 73.87°E and 73.95°E respectively. During the drift, the two objects came within under 2.5 km of one another. On May 27th at 23:00 UTC the pair had their first observed maneuver since achieving geosynchronous orbit, significant given how long the pair had remained static since launch. By May 31st 21:00 UTC, both objects had returned near their original slot, now sitting at 73.27°E and 73.33°E. Prior to this maneuver, from 14–18 March, USA 324 and USA 325 (GSSAP-5 & 6) had conducted a coordinated handoff on the SJ-29 pair — positioning themselves on opposite sides of the Chinese satellites in a bracketing observation posture. USA 325 departed on March 18th, drifting east, as USA 324 closed in to a close-proximity set-up. That continuity of coverage set the stage for what followed. USA 324 (GSSAP-5) — already at close-proximity range of the Chinese pair following the March handoff — executed burns on May 29th 00:00 UTC, 25 hours later after the SJ-29s to their new longitude of 73.23°E. At its closest point during the maneuver, USA 324 closed to under ~30 km from both Chinese objects. The short distance combined with favorable sun angles at the time would have provided excellent conditions for optical imaging. During the relocation, USA 324 appears to have overshot both Chinese objects, requiring corrective burns to bleed off the excess drift and settle back into position between the two satellites by Jun 10th 07:00. China characterizes SJ-29A & B as space target detection technology demonstrators — platforms designed to observe other objects in GEO. This data could suggest USA 324 is treating the SJ-29 pair as a high priority to follow — the irony intact: the pair built to watch others in orbit are themselves being shadowed, departure burn and all. The inspectors moved. The inspector followed. @IntegrityISR @shell_jim @joroulette @SpaceNews_Inc #space #satellite #GEO
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COMSPOC_OPS retweeted
COMSPOC CEO Paul Graziani will speak at the 9th Prague Space Security Conference on Monday, June 15, at 8:35 a.m., joining Panel 1 to discuss strategic stability in an era of asymmetric threats. COMSPOC is proud to be a sponsor of this year’s conference, hosted by @pssi_prague from June 14-16. Titled “Space Races Reimagined: Lunar Ambitions, Ground-Based Competition, and Principled Governance,” the event will focus on strategic competition with China, its rapidly advancing cislunar and lunar ambitions, and the need for principled space stewardship.
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COMSPOC_OPS retweeted
COMSPOC is attending the SSA Operators’ Workshop, hosted by @SpaceNav2, June 2-5 in Boulder, Colorado. This workshop brings satellite operators together to share best practices and support safer spaceflight operations. COMSPOC Senior Research Astrodynamicist Sal Alfano will present “Alternative Risk Metrics - PcMax” on Tuesday, June 2, from 9:50 to 10:05 a.m. Senior Research Astrodynamicist Dave Vallado will also be attending. Thank you to SpaceNav for hosting this workshop.
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COMSPOC_OPS retweeted
China’s TJS-3 satellite maneuvered across GEO and positioned itself near the Gaofen-13 02 imagery satellite, raising new questions about on-orbit inspection, satellite servicing, or tactics development. Read more here: isruniversity.com/2026/05/19…
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Pakistan's PRSC-EO3: an unusual orbit for an optical satellite Radar tracking via @LeoLabs. Processed via COMSPOC SSA. PRSC-EO3 (visualized in cyan) launched April 25, 2026 on a Long March 6. It's an optical imager — but its orbit is curious. Most optical LEO satellites use sun-synchronous orbits (~97-105° inclination), which provide consistent lighting for imaging. PRSC-EO3 is in a 38° inclined orbit instead. This sacrifices global coverage and consistent lighting, but increases revisit rates over a specific latitude band: 20-40°N. That's India, Kashmir, and Pakistan. Now consider PRSC-S1 (visualized in pink), Pakistan's SAR satellite launched July 2025, sitting in a 41° orbit. Similar inclination, similar altitude — but their RAANs are ~175° out of phase. When one passes over South Asia in daylight, the other passes in darkness. SAR works day and night. Optical needs sunlight. The geometry appears to allow complementary coverage. We ran the access analysis [Image 1]. The SAR sensor (unconstrained) and optical sensor (daytime-constrained) together provide repeatable revisit across day and night. The gaps left by one are filled by the other. Then there's PRSC-HS1 — a hyperspectral satellite in SSO [Image 2], capable of detecting camouflage and identifying materials from orbit. Optical shows you the picture. SAR shows you the picture at night and through weather. Hyperspectral tells you what you're looking at. Five remote sensing satellites in 16 months [Image 2]. All launched by China. All with orbits favoring South Asian coverage. The stated missions are civilian. The orbital architecture appears consistent with a multi-modal ISR constellation. @shell_jim , @planet4589, @joroulette, @SpaceNews_Inc , @IntegrityISR #Pakistan #Space #SAR #ISR #PRSC
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👀USA 325 keeps an eye on COSMOS 2589 as it settles into GEO COSMOS 2589 🇷🇺 (launched last June) spent the past few weeks circularizing its orbit before parking at ~98°E. USA 325 🇺🇸 (GSSAP-6) was watching the whole time. Things got interesting around April 19th when COSMOS 2589 actually drifted past USA 325 mid-maneuver. USA 325 repositioned, and by late April both were sitting at the same longitude. From there, observation passes came twice a day due to their different inclinations. Closest was ~13 km on 1 May, with sun angles lining up nicely for a good look. 3D visualization attached — you can really see how COSMOS 2589 tightened its orbit while USA 325 adjusted to stay in position. This is what GSSAP does: when something new shows up in GEO, they're there to take a look. Analysis via COMSPOC SSASuite. @SpaceNews_Inc @SpaceflightNow @BreakingDefense @joroulette @shell_jim @planet4589 #GSSAP #COSMOS #GEO #SDA
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🛰️Russian satellites multi-object proximity event in LEO Radar tracking data via @LeoLabs_Space, processed through COMSPOC SSA Suite. This week we observed a complex proximity event involving Russian satellites: COSMOS 2581, 2582, 2583, and Object F (a subsatellite released by 2583). The highlight: COSMOS 2581 and 2583 achieved a closest approach of ~3 meters on 28 April at UTC, with near-zero relative velocity. This wasn't a coincidental pass — COSMOS 2583 performed several fine maneuvers to maintain this tight configuration. Meanwhile, COSMOS 2582 trailed the formation at sub-100 km range, while Object F passed within 15 km of 2582 and within 10 km of 2581 — neither maneuvered. For context: in late 2025 to now, we tracked these same COSMOS satellites performing 3-object RPO. These satellites launched 5 February 2025. Whatever Russia is testing, it's sophisticated. @SpaceNews_Inc @SpaceflightNow @BreakingDefense @joroulette @shell_jim @planet4589 #RPO #SSA #Russia #Space
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COMSPOC_OPS retweeted
As we look forward to the next era of lunar exploration, we also look backward to all the groundwork Apollo laid for us. We're excited to answer NASA's call for the next generation of rovers with FLIP and FLEX, building on the legacy of lunar exploration that came before with new Artemis era technology and capabilities.
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COMSPOC_OPS retweeted
COMSPOC CEO Paul Graziani joined Laura Todd of @SpaceWatchGL TV to discuss orbit characterization, maneuver detection, and why "it probably won't happen to me" is dangerous thinking. Tracked objects have increased from about 25,000 to 35,000 in the past year, and as Paul noted, handling all of that data becomes a significant operator load. It comes down to a central question: “How can I see what I really need to worry about?” Watch the full interview: youtube.com/watch?v=_DM3h-Dn… Thank you, Laura and SpaceWatch Global TV, for the discussion.
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🛰️ GEO INSPECTION EVENT: US satellites hand off on China's SJ-29 pair For 4 days from 14-18 March, USA 324 and USA 325 (GSSAP) positioned themselves on opposite sides of China's Shijian-29A & 29B — a coordinated "bracket" providing observation angles from both east and west, followed by a handoff for continuous watch on the Chinese pair. USA 324 (GSSAP-5) drifted east and executed two drift-stop burns on 14 March, parking itself at 73.0°E. By 19 March it had closed to ~63 km range from SJ-29A. USA 325 (GSSAP-6) had been positioned near the SJ-29 pair since early January 2026, not long after the Chinese launch. On 18 March it executed its final departure burn and is now drifting east at +0.69°/day, currently at 78.4°E as of 1800Z on 25 March. SJ-29A & SJ-29B (launched Dec 2025) are stationed at 73.19°E and 73.25°E respectively. China describes them as space target detection technology demonstrators — essentially space situational awareness platforms. This coordinated handoff — USA 325 departing as USA 324 arrives — suggests the SJ-29 pair remain a high priority for the GSSAP constellation. Inspectors watching the inspectors. #GSSAP #SpaceSituationalAwareness #GEO #satellite
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🛰️ SY-1202 UPDATE: China's GEO inspector just bounced again. On 12-13 March, SY-1202 executed two in-track burns, reversing its drift from westward (-0.63°/day) to eastward (+0.65°/day). Currently at ~20.7°E and now heading east. This satellite behaves like a pingpong ball in GEO — it drifts back and forth across a ~150° arc, bouncing between ~20°E and ~170°E longitude. When it hits one boundary, it maneuvers and heads the other way. What's in its path as it drifts east? Worth watching. 👀 #SpaceSituationalAwareness #GEO #China
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