Tenth Anniversary of XO-53 Launch

SSETI Express XO-53 streaks across the dark Swedish sky on October 27, 2015. Two images combined, and zoomed. As you can see, they caught a flare. The gap in the middle is when the mirror of the camera was moving in between shots. The two stars marked are the upper two of The Plough.

SSETI Express XO-53 streaks across the dark Swedish sky on October 27, 2015.
Two images combined, and zoomed. As you can see, they caught a flare.
The gap in the middle is when the mirror of the camera was moving in between shots.
The two stars marked are the upper two of The Plough.

The XO-53 (SSETI Express) satellite was launched October 27, 2005 at 06:52 UT on board a Kosmos 3M rocket launched from the Plesetsk Cosmodrome in central Russia.

SSETI Express XO-53

SSETI Express XO-53

SSETI Express was developed by the Education Office of the European Space Agency (ESA) as part of the “Student Space Exploration and Technology Initiative”. The satellite measures 60x60x70 cm with a mass of about 50 kg. It was built by university students from a number of teams from all across Europe and assembled at the ESA ESTEC facility in the Netherlands.

AMSAT-UK provided a 3 watt S band transmitter to the project – on the basis that it could be linked to the UHF receiver for operation as a single channel FM voice transponder when all the experiments have been completed. The unit also incorporates its own switch mode power supply and a 38k4 TNC to allow the rapid downlinking of data – especially necessary for the camera experiment.

Shortly after launch SSETI deployed three CubeSats, XI-V, UWE-1 and Ncube-2, developed by university students. After deploying the CubeSats, XO-53’s batteries stopped charging and the spacecraft went silent.

ESRANGE in Arctic Sweden

ESRANGE in Arctic Sweden

On the 10th Anniversary of the SSETI Express Launch a crack squad of geeks, Neil Melville-Kenney PA9N, Graham Shirville G3VZV, Karl Kaas OZ2KK, Sascha Tietz KJ6LIL and Lars Mehnen OE3HWM, headed to the ESRANGE facility in Northern Sweden to attempt to SEE the spacecraft for the first time in a decade.

They successfully captured images of the satellite as it streaked across the dark Swedish sky.

Read the AMSAT-UK SSETI Express Handbook

Read the Story of the birth of the On Board Computer for SSETI Express by Karl Kaas

AMSAT-UK has been given exclusive access to the report on the hunt for SSETI Express. Read the SSETI Express Phase E – 400-800 THz Downlink Report

Further pictures are available on the Facebook page of Neil Melville-Kenney PA9N

Explanation of the SSETI Express XO-53 observed flare in terms of the two images captured on Oct. 27, 2015. Note, the team couldn't use mirror lock-up in combination with the specific remote. Hence the wobble.

Explanation of SSETI Express observed flare in terms of the two images captured Oct. 27, 2015
Note team couldn’t use mirror lock-up in combination with the specific remote, hence wobble

UKube-1 CubeSat Completes Mission

UKube-1 in flight configuration in the cleanroom at Clyde Space Ltd - Credit Steve Greenland 2M0SCG

UKube-1 in flight configuration in the cleanroom at Clyde Space Ltd – Credit Steve Greenland 2M0SCG

UKube-1, the UK Space Agency’s first national spacecraft, has now completed its nominal mission following over 14 months of operations. Discussion is underway with AMSAT-UK about the possibility of taking over UKube-1 operations to continue its educational and outreach activities.

UKube-1 CubeSat installed in Deployment Pod

UKube-1 CubeSat installed in Deployment Pod

Launched in July 2014, UKube-1 is a technology demonstration mission with a broad set of objectives aimed at attracting and training future generations of engineers, encouraging collaboration across sectors and institutions, fast tracking space technology development and engaging with students.

As a 3 unit CubeSat (30x30x10cm), flying 4 main payloads, with all the key subsystems of much larger satellites, UKube-1 remains one of the most advanced CubeSats ever built. Despite some technical challenges in orbit, the mission has achieved a range of milestones including:

• delivery into the correct planned orbit (around 650km, sun-synchronous)
• successful deployment of solar panels and antenna
• good battery health
• slow spin rate measured
• uplink and downlink capabilities checked, including Large Data Transfer, downlink at 3 speeds, and redundant communications mode
• all core payloads commissioned and data collected for each
• on-board camera technology successfully tested
• data downlinked from multiple ground stations across the globe

UKube-1 has also helped maintain the UK’s leading position in the CubeSat sector. Participation in the mission placed Clyde Space in an excellent position to capitalise on the fast growing global nanosatellite market. The company has experienced 100% year on year growth, both in turnover and employees, as a direct result from involvement in UKube-1, and is firmly established as a global leader.

Andy Strain and Steve Greenland 2M0SCG in Kazakhstan with UKube-1 and Deployment Pod

Andy Strain and Steve Greenland 2M0SCG in Kazakhstan with UKube-1 and Deployment Pod

Mark McCrum, Bright Ascension Ltd, said:

“UKube-1 provided us with an invaluable opportunity to gain flight heritage for our software technology and to get deeply involved in the operation of a complex CubeSat mission. It gave a huge boost to our credibility as a space software provider and has been instrumental in winning further work.”

Craig Clark, CEO Clyde Space Ltd, said:

“UKube-1 represents a pivotal achievement in the development and growth of Clyde Space. The project moved the company from being a spacecraft subsystems supplier to providing full missions for our customers. To give some context to the extent that Ukube-1 has had to our business, Clyde Space has more than quadrupled in size in the last 3 years and there are currently over 60 CubeSats planned through production here in Glasgow over the next 18 months. The return on investment for Ukube-1 in terms of jobs and export sales for the UK has been outstanding and is a great example of industry and the UK Space Agency working together to put the UK at the forefront of global space technology.”

Professor Andrew Holland, Open University, added:

“Involvement in the UKube-1 mission, though our C3D instrument, has had a positive effect on our research and technology programme within the Space Instrumentation Group at the Open University, as well as a positive effect on our technology partners in the project; XCAM Ltd and e2v Ltd. The project has helped the OU to build a new strand of instrument development within the group, raised awareness of the CubeSat platform as a potential vehicle to accelerate the development of scientific space instrumentation, and has provided early in-orbit-demonstration of technologies. The mission introduced us to new academic and industrial collaborators operating in the space sector and supported the career development of the young engineers and scientists working on the project.”

Dr Helen Walker at the AMSAT-UK Space Colloquium - Credit DK3WN

Dr Helen Walker at the AMSAT-UK Space Colloquium – Credit DK3WN

STFC’s RAL Space provided the Ground Station for the misison at Chilbolton Observatory in Hampshire UK, and UKube-1 operations were commanded from there. Mission Manager Dr Helen Walker said:

“It has been a very exciting time, made possible only with the great support from all the teams involved.”

Although the Agency-supported mission phase has ended, discussion is underway with AMSAT-UK about the possibility of taking over UKube-1 operations to continue its educational and outreach activities until the satellite orbit naturally degrades.

More information about UKube-1 can be found in the missions section of the UK Space Agency website https://www.gov.uk/government/case-studies/ukube-1

Source https://www.gov.uk/government/news/ukube-1-completes-mission

UKube-1 carries a set of AMSAT-UK FUNcube boards which provide an educational beacon for use by schools and a linear transponder for amateur radio communications.

UKube-1 nominal frequencies:
• 145.840 MHz Telemetry downlink
• 145.915 MHz FUNcube subsystem beacon
• 400 mW inverting SSB/CW linear transponder
– 435.080-435.060 MHz Uplink
– 145.930-145.950 MHz Downlink

Dr Helen Walker gave a presentation on UKube-1 to the 2015 AMSAT-UK International Space Colloquium in Guildford.

Watch UKube-1: technology, mission and operations – Dr Helen Walker

UKube-1 https://amsat-uk.org/satellites/communications/ukube-1/

Radiocommunication Assembly opens in Geneva

Delegates at the ITU Radiocommunication Assembly October 26, 2015

Delegates at the ITU Radiocommunication Assembly October 26, 2015

The ITU Radiocommunication Assembly (RA-15) has opened in Geneva ahead of the World Radiocommunication Conference 2015 (WRC-15) which commences next week.

Logo WRC RA 2015The Radiocommunication Assembly, which is responsible for the structure, programme and approval of radiocommunication studies, runs from October 26-30 followed by WRC-15 from November 2-27.

There are a number of agenda items for WRC-15 which may impact amateur radio, among them are:

• Agenda Item 1.1 – Additional allocations for Mobile (IMT) services and applications

• Agenda Item 1.4 Amateur service, on a secondary basis, in the 5250–5450 kHz band

• Agenda Item 1.10 – Additional mobile satellite IMT allocations in the 22-26 GHz range

• Agenda Item 1.18 – Radar for automotive applications in 77.5-78.0 GHz

• Agenda Item 9.1, issue 9.1.8 – Regulatory aspects for nano and pico-satellites

Pictures of the RA-15 Opening Plenary can be seen at
https://www.flickr.com/photos/itupictures/22302633870/in/dateposted

RA-15 http://www.itu.int/en/ITU-R/conferences/RA/2015/Pages/default.aspx

WRC-15 http://www.itu.int/en/ITU-R/conferences/wrc/2015/Pages/default.aspx

University of Southampton CubeSat Program

Aleksander Lidtke at 2014 AMSAT-UK International Space Colloquium - Image DK3WN

Aleksander Lidtke at 2014 AMSAT-UK International Space Colloquium – Image DK3WN

The University of Southampton is developing its own CubeSat with a view to obtaining a free launch on the VEGA launch vehicle.

University of Southampton Small Satellite is a group of students, primarily from a physics background, who aim to get a fully functional satellite into space, possibly by the end of 2016. Over a number of years they have designed the structure, the power, attitude control and the onboard processing and work is continuing on the development and integration of these subsystems into a full operational system.

Wessex Scene recently published an article about the project which included an interview with Aleksander Lidtke who in 2014 gave a presentation about the CubeSat to the AMSAT-UK International Space Colloquium in Guildford.

Phil Crump M0DNY has released a video showing the first step of the Southampton University Spaceflight CubeSat Telecommand Board construction.

Watch SUSF Telecommand Prototype: AVR + Switches + LEDs Demo

Wessex Scene article https://www.wessexscene.co.uk/science/2015/10/17/the-final-frontier-how-a-group-of-university-of-southampton-students-aim-to-get-a-satellite-into-space/

Watch the 2014 presentation by Aleksander Lidtke at the AMSAT-UK International Space Colloquium
https://www.youtube.com/watch?v=4uWdPkHObJw

Videos of other presentations and PDF’s of the slides are available at
https://amsat-uk.org/colloquium/colloquium-2014/presentation-videos/

University of Southampton Small Satellite UoS³ Cubesat Program
http://generic.wordpress.soton.ac.uk/uos3/

Southampton University Spaceflight Ground Station
http://susf.co.uk/wiki/doku.php?id=cubesat_ground_station

Follow SUSF on Twitter @SUSpaceflight

Amateur radio balloon enthusiast helped restore BTTF DeLorean

Ara Kourchians N6ARA in BTTF DeLorean Time Machine

Ara Kourchians N6ARA in BTTF DeLorean Time Machine

Radio amateur and High Altitude Balloon enthusiast Ara Kourchians (Arko) N6ARA was among those who helped restore the Back To The Future DeLorean time machine for Universal Studios.

Ara Kourchians N6ARA restoring BTTF Delorean

Ara Kourchians N6ARA restoring BTTF DeLorean

The San Bernardino Microwave Society newsletter reported his interest in the amateur microwave bands when he was a student in 2008.

Ara N6ARA has since flown many amateur radio High Altitude Balloons and in 2013 attended the UKHAS Conference in London to give a presentation on US Ballooning.

By 2015 he completed his bachelors degree in Electrical Engineering at Cal Poly Pomona and has worked as a Software Engineer at JPL.

Ara Kourchians N6ARA appeared in a video about the DeLorean restoration project.

Watch “OUT OF TIME: Saving the DeLorean Time Machine” – Trailer 1

Ara’s presentation to the UKHAS 2013 Conference can be seen at
http://www.batc.tv/channel.php?cat=HAB+2013&ch=1&id=1168

Arko N6ARA
http://arkorobotics.com/
https://twitter.com/arkorobotics

IARU Region 3 Conference

IARU-R3 LogoThe ARRL reports on the 16th International Amateur Radio Union (IARU) Region 3 triennial conference held in Bali, Indonesia, October 12-16.

Working Group 2 (WG2) dealt with such operational and technical matters as emergency communication, digital modes, a common APRS frequency, and Region 3 band plans. Titon Dutono, YB3PET, chaired WG2, and ARRL CEO David Sumner, K1ZZ, served as its secretary. In all, working group members discussed 37 papers and submitted recommendations to the conference for adoption.

Among recommendations adopted was one to ask the IARU Administrative Council to make available information on the use of the Amateur Satellite Service for member societies, satellite groups, Amateur Satellite operators, and concerned radio amateurs. This information would include, but not be limited to, criteria for a satellite to be in the Amateur Satellite Service and the procedure for IARU satellite frequency coordination.

The conference also adopted adjustments to the Region 3 band plans. Region 3 directors will consider making the format similar to that used in Regions 1 and 2.

Read the full ARRL story at
http://www.arrl.org/news/iaru-region-3-conference-opens-with-a-gong-adopts-recommendat

The Chinese Radio Sports Association / Chinese Radio Amateur Club submitted a paper titled Amateur Satellite Guide which said “Amateur satellite projects may rely on a wide range of cooperation between radio amateurs and other parties, as the consequence, the nature of the mission can be complicated. Without a set of definite criterion, the service classification of a mission may not be crystal clear to both satellite operators and other radio amateurs, especially when the radio payload supplies amateur service but also covers certain kind of other tasks.”

The CRSA/CRAC proposed “that the IARU AC shall consider to make available some information on use of the amateur satellite service for member societies, satellite groups, amateur satellite operators as well as concerned radio amateurs.”
http://www.iaru-r3.org/16r3c/docs/055r1%20Amateur%20Satellite%20Guide.docx

CRSA/CRAC paper on the number of radio amateurs – paper also notes Beijing has allocated 135.7-137.8 kHz to the Amateur Satellite Service
http://www.iaru-r3.org/16r3c/docs/054%20CRSA-CRAC%20Report.docx

The Working Group 2 report recommended a common APRS frequency of 144.390 MHz for High Altitude Balloons and terrestrial use. The Region 3 Directors will be consulting with IARU Regions 1 & 2
http://iaru-r3.org/16th-triennial-conference-of-the-iaru-r3-documents/#058

Papers submitted for the conference may be seen at
http://iaru-r3.org/16th-triennial-conference-of-the-iaru-r3-documents/

IARU Region 3 Act on Band Plan Satellite Allocations
https://amsat-uk.org/2015/08/21/iaru-region-3-act-on-band-plan-satellite/