Russia’s Destruction of an Orbiting Satellite Raises Space Debris Concerns

Russia tested an anti-satellite weapon on November 15, destroying one of its own old and defunct satellites, Kosmos 1408. Launched in 1982, Kosmos 1408 was some 300 miles above Earth. Its destruction generated a debris field in Earth orbit that prompted the seven International Space Station crew members, including one Russian cosmonaut, to take cover in their crew capsules for several hours, in case they had to abandon the station. Occupants of the Chinese space station are reported to have taken similar action. The incident also has generated criticism from many corners and a grave discussion on the possible impact of any future such tests, by Russia or anyone else.

The danger of damage to the ISS or an orbiting satellite aside, tracking a debris field that could include thousands of pieces, in order to head off collisions, is a concern all its own. Very small debris in space is essentially impossible to track reliably, if at all. The incident also comes at a time when the number of spacecraft in Earth orbit continues to grow. AMSAT President Robert Bankston, KE4AL, said that Russia’s action will pose a threat to all activities in low Earth orbit for years to come, placing satellites and human spaceflight missions at risk.

“Space is already crowded, but now there are at least 1,500 trackable fragments and, possibly, hundreds of thousands of smaller yet still-threatening pieces of debris in low Earth orbit,” Bankston said. “While space stations have the capability to move out of the way, with sufficient notice, most satellites in low Earth orbit, including those designed, built, launched, and operated by AMSAT, do not. As such, they face greater risk of catastrophic destruction or degraded mission functionality, if struck by fragments from Russia’s destruction of Kosmos-1408.”

Bankston said AMSAT is closely monitoring the situation and hoping for the best.

NASA Chief Bill Nelson echoed Secretary of State Antony Blinken in expressing his own outrage at Russia’s action. “Their actions are reckless and dangerous threatening as well the Chinese space station at the taikonauts on board,” he said. “The [ISS] is passing through or near the cloud every 90 minutes, but the need to shelter for only the second and third passes of the event was based on a risk assessment made by the debris office and ballistics specialists at NASA’s Johnson Space Center in Houston,” Nelson explained.

FCC Commissioner Nathan Simington condemned the incident as “irresponsible” and noting that orbital debris fields pose a threat to hopes for the peaceful use of space and “make the work of using space complicated and difficult,” he said in a statement. “For decades to come, they stifle scientific research, inhibit communications, and pose threats to the lives of explorers. And in the here and now, they pose a great threat to [existing] satellites of all nations” deployed for peaceful purposes.

“No one owns space,” Simington said. “And no one should intentionally make it more difficult to use.”

The FCC’s orbital debris rules date back to 2004, when the FCC adopted requirements affecting not only Part 97 Amateur Service rules but Parts 5 (experimental) and 25 (communications satellites) The FCC has made it clear that orbital debris rules apply to amateur satellites, in general requiring submission of an orbital debris mitigation plan with each license application.  

AMSAT-NA Elects Officers, Discusses Ongoing and Future Satellite Projects

AMSAT-NA President Robert Bankston, KE4AL, told the 2021 AMSAT Dr. Tom Clark, K3IO, Memorial Space Symposium on October 30 that the organization is looking ahead to future satellite missions but will “go commercial” in order to keep enough satellites in space. Bankston, who was re-elected at a virtual Board meeting on October 29, said AMSAT is in solid financial position and donations are “healthy.” Bankston said membership numbers are holding strong, with more than 4,000 members in 76 countries, and that recent administrative modernization has reduced overhead costs by more than 30%.

Vice President-Development Frank Karnauskas, N1UW, noted that, despite AMSAT’s solid financial standing, additional funds are needed to design, build, and launch satellites. Consequently, AMSAT is ramping up its grant-writing efforts, applying for grants from philanthropic organizations and corporate sponsors.

Bankston said AMSAT’s strategic plan prioritizes putting satellites into high-Earth orbits. He also summarized the GOLF (Greater Orbit, Larger Footprint) initiative as part of its plan to reach higher orbits. AMSAT will not be giving up on low-Earth satellites (FM CubeSats), however. “FM satellites are very important and can serve as a stepping stone to more sophisticated spacecraft,” Bankston said. AO-91 and AO-92 are “living on borrowed time,” so new initiatives are in order.

Bankston said purchasing commercial satellites can shorten the development time. AMSAT plans to purchase a v/U 1U FM CubeSat, powered by four lithium-ion cells, but the Board said 90% of funding would have to be obtained from external sources. This would not be a permanent approach, however.

Bankston said the organization will be seeking additional volunteers to put its plans into action. “Any expansion of the strategic plan will need more volunteers,” Bankston said, adding that current volunteers “are pretty much at full bandwidth.”

Vice President-Engineering Jerry Buxton, N0JY, reviewed satellite projects in the pipeline. These include providing a linear transponder module to the University of Maine for its MESAT1, set to launch in 2022.

The GOLF-TEE (Technology Evaluation Environment) CubeSat is under construction and has been added to a launch manifest tentatively for summer of 2022. Supply chain issues are impacting construction. GOLF-1 is planned for delivery 1 year after the completion of GOLF-TEE.

Bankston mentioned new regulations that will govern satellite launches in the future. The Orbital Debris Assessment Regulations (ODAR) complicate the design and licensing of the GOLF 3U platforms, however.

A new AMSAT award program was announced to recognize the contribution of rover stations to the world of grid hunting. The award is called the Reverse VUCC Award — or VUCC/r. Earning it could be tough. Rather than contacting a set number of grids per band, the goal is to make contacts from a set number of grids per band. AMSAT took over the issuance of this award from the Central States VHF Society in September. The number of grids coincides with the ARRL award.

Also: As of November 1, FM contacts will no longer be accepted toward the Robert W. Barbee Jr., W4AMI Award. A consensus of AMSAT Board members expressed concern over the demands being placed on the limited availability of FM satellite repeaters. The Barbee Award requires the submission of 1,000 satellite contacts via OSCAR-6 or later satellites. Endorsements are available.

The AMSAT Board also heard reports from officers and representatives. The 2021 AMSAT Dr. Tom Clark, K3IO, Memorial Space Symposium and Annual General Meeting is available on AMSAT’s YouTube channel. 

AMSAT CW Activity Day 2021 Takes Place On New Year’s Day

AMSAT has announced that its CW Activity Day 2021 will take place all day on Friday, January 1, 2021, starting at 0000 UTC (New Year’s Eve in North American time zones). Operate CW through any amateur radio satellite. Straight keys and semi-automatic keys (bugs) are encouraged. No logs are necessary, but AMSAT asks participants to post brief activity reports on the AMSAT bulletin board (AMSAT membership is not required). During this and all other satellite activity, use only the minimum power needed to complete contacts.

Thanks to Ray Soifer, W2RS

ARISS-USA is Created From ARISS International

In late May, the USA team of the ARISS International working group became an incorporated non-profit entity in the state of Maryland, officially becoming ARISS-USA. This move allows ARISS-USA to work as an independent organization, soliciting grants and donations. They will continue promoting amateur radio and STEAM—science, technology, engineering, arts, and math within educational organizations and inspire, engage and educate our next generation of space enthusiasts. 
 
ARISS-USA will maintain its collaborative work with ARISS International as well as with US sponsors, partners, and interest groups. The main goal of ARISS-USA remains as connecting educational groups with opportunities to interact with astronauts aboard the International Space Station (ISS). ARISS-USA will expand its human spaceflight opportunities with the space agencies, beyond low Earth orbit, starting with lunar opportunities including the Lunar Gateway. ARISS-USA will continue to review and accept proposals for ISS contacts and expand its other educational opportunities to increase interest in space sciences and radio communications.
 
Becoming an independent organization has been discussed for quite some time. ARISS-USA lead Frank Bauer, KA3HDO said “The scope and reach of what ARISS accomplishes each year has grown significantly since its humble beginnings in 1996. Our working group status made it cumbersome to establish partnerships, sign agreements and solicit grants. These can only be done as an established organization.”  Bauer further elaborated, “The ARISS-USA team remains deeply indebted to our working group partners—ARRL and AMSAT, who enabled the birth of ARISS—and our steadfast sponsors, NASA Space Communication and Navigation (SCaN) and the ISS National Lab (INL).” ARISS-USA aims to keep earning high regards from all these partners and sponsors.    
 
While ARISS-USA is now an incorporated non-profit entity, we are in the process of applying for tax exemption as a Section 501 (c) (3) charitable, scientific or educational organization. Until that status is approved by the USA Internal Revenue Service, donations made directly to ARISS-USA will not be tax deductible for taxpayers in the USA. Those wanting to make a tax deductible donation for the benefit of ARISS-USA can, in the meantime, continue to make donations to ARISS sponsor AMSAT-NA through the ARISS website at: www.ariss.org.
 
As ARISS-USA begins a new era as a human spaceflight amateur radio organization, it acknowledges those who were so instrumental in the formation of human spaceflight amateur radio. These include Vic Clark, W4KFC and Dave Sumner, K1ZZ from the ARRL; Bill Tynan, W3XO and Tom Clark, W3IO from AMSAT; Roy Neal, K6DUE a major guide for SAREX and ARISS; and NASA astronaut Owen Garriott, W5LFL.  Also remembered is Pam Mountjoy, NASA education, who had the vision to develop the ARISS working group as a single amateur radio focus into the space agencies. All of these giants’ shoulders are what ARISS-USA rests upon.

AMSAT Announces 2019 Board Election Results

As a result of the 2019 AMSAT Board of Directors election, Jerry Buxton, N0JY; Drew Glasbrenner, KO4MA; Patrick Stoddard, WD9EWK; and Michelle Thompson, W5NYV, were elected by the AMSAT membership to serve for 2 years. The First Alternate is Brennan Price, N4QX. The Second Alternate is Howie Defelice, AB2S. Both will serve 1-year terms.

Total number of votes cast was 1,052 (892 electronic plus 160 paper), with the tally as follows:

  • Michelle Thompson, W5NYV, 675 votes
  • Patrick Stoddard, WD9EWK, 585 votes
  • Jerry Buxton, N0JY, 526 votes
  • Drew Glasbrenner, KO4MA, 515 votes
  • Brennan Price, N4QX, 480 votes
  • Howie Defelice, AB2S, 435 votes
  • Paul Stoetzer, N8HM, 399 votes
  • Johns, WE4B, 366 votes.

— Thanks to AMSAT Secretary Clayton Coleman, W5PFG

ARISS Packet Radio System Expected to be Back Late this Year

ARRL – The currently silent packet radio system on the International Space Station could be back on the air by year’s end.

Amateur Radio on the International Space Station (ARISS) hardware team members have located an original duplicate of the packet module that had been in use on the International Space Station (ISS) before failing more than a year ago after 17 years of service. With a new battery installed, the unit was tested and found to be functioning. The ARISS packet system in the space station’s Columbus module, operating on 145.825 MHz, quit last July after first experiencing some problems. All necessary paperwork has been completed to manifest the packet module on the Progress 71P spacecraft launch now set for Halloween, with docking on November 2.

“Installation date will depend on the crew’s busy schedule, but ARISS hopes packet can be online again by the end of November 2018,” ARISS said this week in a news release. ARISS said it’s heard from “many hams” who have been asking when the packet system will be back on the air.

When the ARISS packet module aboard ISS died in last year, the ARISS hardware team already was overburdened with the design and safety certification of the new interoperable radio system ARISS has been developing that’s set for launch next year. The team did attempt some basic troubleshooting of the old packet module but was unable to revive it and decided instead to dedicate all of its time to the new replacement radio system, including packet capability.

ARISS Packet Radio System Expected to be Back Late this Year

Early this year, thermal testing of the first flight-identical power supply for the new comprehensive radio system showed that some changes to air flow were needed. This change would delay launch of the new radio equipment from late 2018 to early 2019.