$50SAT / MO-76 six months in space and counting

Yaesu handheld and $50SAT 1.5U PocketQube

Yaesu handheld and $50SAT 1.5U PocketQube

Wednesday, May 21, 2014, marked the six month anniversary of the launch of the tiny $50SAT / MO-76 PocketQube satellite which is just 5x5x7.5 cm and 210 grams.

Michael Kirkhart KD8QBA has released an update on this remarkable satellite:

We have finally completed the first pass cleanup of the telemetry data provided by all of you.  We cannot thank you enough for this data, as it will help us understand how $50SAT/MO-76 has been operating.  Keep it coming!

On the Dropbox, you will find a new directory (Telemetry-analysis/Battery-voltage-2014-06-04) containing our first set of processed data, which serves as an initial investigation into the performance of the on-board Li-ion battery.  Included in this directory is a spreadsheet with all the battery voltage data we have up to now, in both tabular and graphical form; it consists of 1097 individual telemetry observations.  For convenience sake, there is also a copy of the graph in PDF form.  Over the past 6 months, the daily average battery voltage has been dropping.  A best fit line through all the data has a slope of -0.670 mV per day.  The drop, however, has not always been gradual.  For instance, there is a large step change of about -60 mV sometime near February 20, 2014.  We are not sure what happened here.  Anybody out there know what might be going on?

Ignoring the two outliers on the graph, the current low battery voltage is 3521 mV.  This has been observed at least 5 times, including twice by yours truly.  This, of course, occurs when $50SAT/MO-76 happens to be at its lowest temperature, which has been -28 degrees C until yesterday evening, where I observed a temperature of -29 degrees C.  While our depth of discharge on the battery is relatively low (our initial calculations were about 22 mA-hr), it is going through about a -28 degree C to 26 degree C (or possibly higher – this is our highest recorded temperature) and back down to -28 degrees C 14.5 times per day.  Does this violate the conditions of the warranty?

As to whether or not the orbit is decaying, a comparison of the current TLEs with a set from early December 2013 show it is, although by a small amount.

Here are the TLEs from December 4, 2013 (element set 7):
2013-066W
1 39436U 13066W   13337.88841924  .00010097  00000-0  12132-2 0    70
2 39436  97.8019  50.2525 0031655 170.6351 189.5525 14.83797851  1855

Here are the TLEs from June 2, 2014 (element set 223):
EAGLE 2
1 39436U 13066W   14152.25170112  .00007510  00000-0  78254-3 0  2235
2 39436  97.7787 226.1156 0024706 303.1274  56.7439 14.89857855 28503

$50SAT Boards

$50SAT Boards

The second to last element on line 2 is the mean motion, in units of orbits per day.  From this number, the semi-major axis of the orbit can be computed.  On December 4, 2013, it was 6,995.50 km, and on June 2, 2014, it was 6,976.51 km.  This means the orbit has decayed by about 19 km during this time period.  The orbit has also become slightly less elliptical.  The forth element on line 2 is the eccentricity, which has an implied decimal point in front of it.  On December 4, 2013, it was 0.0031655, and on June 2, 2014, it was 0.0024706.  From this and the computed semi-major axis, the apogee and perigee altitudes are as follows:
December 4, 2013:  apogee = 639.64 km, perigee = 595.36 km
June 2, 2014: apogee = 615.75 km, perigee = 581.27 km

The technical challenge we posed to the amateur community to successfully uplink to $50SAT/MO-76 has yet to be met.  We have since realized some of the documentation, specifically the Silicon Labs Si4432 data sheet, was not clear on at least one of the needed details.  To encourage the amateur radio community to answer our challenge, we will post some information that should be helpful in uplinking to $50SAT/MO-76; look for this sometime in the next few days.

$50SAT/MO-76 has made it onto YouTube!  See a video of the excellent talk on $50SAT/MO-76 given by Howie DeFelice, AB2S, and a video of yours truly operating the AMSAT demo station during a $50SAT/MO-76 pass at the Dayton Hamvention.

73

Michael Kirkhart
KD8QBA
$50SAT/MO-76 team

Talk by Howie DeFelice AB2S at the May 14, 2014, PocketQube workshop
(thanks to Gustavo, LW2DTZ, for taking and posting this video)

$50SAT was a collaborative education project between Professor Bob Twiggs, KE6QMD, Morehead State University and three other radio amateurs, Howie DeFelice, AB2S, Michael Kirkhart, KD8QBA, and Stuart Robinson, GW7HPW. The transmitter power is just 100 mW on 437.505 MHz (+/-9 kHz Doppler shift) FM CW/RTTY. $50SAT uses the low cost Hope RFM22B single chip radio and PICAXE 40X2 processor.

Michael Kirkhart KD8QBA operates AMSAT demo station during $50SAT/MO-76 pass Friday, May 16
(thanks to Patrick Stoddard, WD9EWK, AMSAT-NA Vice President for Field Operations, for this video)

$50SAT PocketQube Amateur Radio Challenge
https://amsat-uk.org/2014/02/21/50sat-amateur-radio-challenge/

Further information in the $50SAT Dropbox https://www.dropbox.com/sh/l3919wtfiywk2gf/-HxyXNsIr8

$50SAT – Eagle2 – Communications – Release Version V1_2.pdf
http://tinyurl.com/50DollarSatCommunicationsV1-2

Hope RFM22B single chip radio http://www.hoperf.com/rf/fsk_module/RFM22B.htm

There is a discussion group for $50SAT http://groups.yahoo.com/groups/50dollarsat/

50DollarSat http://www.50dollarsat.info/

Educational STEM 434.3 MHz Balloon Launch Tuesday 2:30pm

Chris Stubbs M6EDF with 434 MHz trackers

Chris Stubbs M6EDF with 434 MHz trackers

Continuing his Science, Technology, Engineering and Mathematics (STEM) work with schools, Chris Stubbs M6EDF, will launch a balloon STEWARDS-1/CHEAPO-12 for Stewards Academy, Harlow.

The launch will take place at 2:30pm (13:30 GMT) on Tuesday, June 3. Chris will be using a “mini” tracker with 1 AA battery on a 36″ foil balloon and aims to get the balloon to float for a long duration.

It will transmit 50 bps 7n2 RTTY on 434.300 MHz with about 450 Hz FSK and may have a range of up to 500 km depending on altitude.

Chris took the amateur radio Foundation training course run by the Chelmsford Amateur Radio Society (CARS) in January 2013. He is keen on both electronic construction and software development and combines the two interests in High Altitude Ballooning (HAB). Chris has built many tracker payloads for his balloon launches which usually take place from Danbury Common near Chelmsford.

M6EDF CHEAPO Micro TrackerDetails of his high-altitude ballooning hardware and experiments are online at http://chris-stubbs.co.uk/

See online real time tracks and frequencies of this and other 434 MHz balloons at
http://spacenear.us/tracker/

Beginners Guide to Tracking using dl-fldigi http://ukhas.org.uk/guides:tracking_guide

The role of these 434 MHz balloon launches in teaching maths and science was recently recognised by the Department for Education (DfE) see https://amsat-uk.org/2014/05/11/434-mhz-balloons-have-a-role-in-stem-education/

Listen to balloons online (when in range of south-east UK) from anywhere in the world with the SUWS 434 MHz WebSDR (select USB) https://amsat-uk.org/2013/12/28/websdr-for-434-and-1296-mhz/

Check the #highaltitude IRC channel for launch chat. A web client is available at http://webchat.freenode.net/?channels=highaltitude

To get up-to-date information on balloon flights subscribe to the UKHAS Mailing List by sending a blank email to this address: ukhas+subscribe@googlegroups.com

Chelmsford 434 MHz STEM Balloon Launch
https://amsat-uk.org/2014/05/17/chelmsford-434-mhz-stem-balloon-launch/

The Chelmsford Amateur Radio Society run training courses for those wishing to get their amateur licence. To find out more speak to Clive G1EUC on
Tel: 01245-224577
Mob: 07860-418835
Email: training2014 at g0mwt.org.uk
Web: http://www.g0mwt.org.uk/training/

What is Amateur Radio ? http://www.essexham.co.uk/what-is-amateur-radio

Post flight update: The balloon floated at an altitude of under 6,000 metres for just over 2 hours.

Flight path of M6EDF's balloon STEWARDS on June 3. 2014

Flight path of M6EDF’s balloon STEWARDS on June 3. 2014

ARTSAT1:INVADER Reception Reports Needed

ARTSAT INVADER Team Members

ARTSAT INVADER Team Members

Masahiro Sanada JI1IZR reports the amateur radio CubeSat ARTSAT1:INVADER (CO-77) is in trouble and asks radio hams to listen for the satellite and report any reception.

ARTSAT1:INVADER

ARTSAT1:INVADER

ARTSAT1:INVADER, one of the CubeSats, is in trouble that the satellite does not reply after the command by the command station.

The members are trying to find out how to recover.

We have no reply from the satellite, nor the CW [437.325 MHz] becomes not to be heard after the command.

When you have a chance to listen to the satellite, please send your report via the form at:
http://api.artsat.jp/report/

Your report will be great help for the members.

We appreciate your help very much.
Thank you.

Masahiro Sanada
de ji1izr
Hiratsuka-city
Kanagawa,Japan

INVADER is an amateur radio “Art Satellite” developed by students at the Tama Art University as a part of the “ARTSAT: Art and Satellite Project” which aims at a practical use of a satellite for art and design.

The 1U CubeSat was launched from the Yoshinobu Launch Complex at the Tanegashima Space Center on Thursday, February 27 at 1837 UT. It carries a CW (A1A) beacon on 437.325 MHz (+/- 10 kHz Doppler shift), a 1200 bps FM AX.25 Packet Radio and FM Digitalker on 437.200 MHz and a low-resolution camera.

ARTSAT http://artsat.jp/

Facebook http://www.facebook.com/artsat

Twitter http://twitter.com/INVADER_ARTSAT

ARTSAT1:INVADER designated OSCAR 77
https://amsat-uk.org/2014/04/03/artsat1invader-designated-oscar-77/

ARTSAT students at the Tama Art University

ARTSAT students at the Tama Art University

ISEE-3 Spacecraft Reboot Project Update

ISEE-3 - ICE Spacecraft - Image credit NASA

ISEE-3 – ICE Spacecraft – Image credit NASA

Dennis Wingo KD4ETA has released an update on the attempts by volunteers, including radio amateurs, to gain control of the NASA ISEE-3 spacecraft.

The International Sun-Earth Explorer (ISEE-3), a spacecraft that was launched in 1978 to study Earth’s magnetosphere and repurposed in 1983 to study two comets. Renamed the International Cometary Explorer (ICE), it has been in a heliocentric orbit since then, traveling just slightly faster than Earth. It’s finally catching up to us from behind, and will be closest to Earth in August, 2014.

In his report Dennis says that the spacecraft was successfully commanded into engineering telemetry mode and he mentions the work of radio amateurs Achim Vollhardt DH2VA (AMSAT-DL Bochum) and Phil Karn KA9Q.

[Achim Vollhardt DH2VA and Mario Lorenz DL5MLO plan to attend the AMSAT-UK International Space Colloquium in Guildford July 26-27 to give a presentation of their work. The event is open to all]

Regarding the possibility of Lunar impact Dennis says “If we can maneuver the spacecraft by June 17th we get the very small delta V number for the maneuver above. However, this starts to climb rapidly as the spacecraft gets closer to the moon. Also we cannot at this time rule out a lunar impact. It is imperative that we get a ranging pass as soon as possible. We also need time to not only evaluate the health of the spacecraft, but to test the systems, the catalyst bed heaters for the propulsion system, the valve heaters, analyze the rest of the propulsion, power, and attitude control system as rapidly as possible. This will be a lot of commanding so we have to move into high gear next week. This is a very fluid situation and we have made amazing progress, thanks to the support of those who believed in us in our crowd funding and the support of our NASA sponsors at NASA Ames and NASA headquarters. More to come soon!!”

Read the report at http://spacecollege.org/isee3/isee-3-reboot-project-update-bullseye-and-more.html

Watch ISEE-3 Reboot Project – Recovering a 30 year old space probe

ISEE-3 / ICE Telecommunications Summary
http://mdkenny.customer.netspace.net.au/ISEE-3.pdf

Dennis Wingo KD4ETA blog http://denniswingo.wordpress.com/

Can radio amateurs command the ISEE-3 / ICE spacecraft ?
https://amsat-uk.org/2014/03/19/can-radio-amateurs-command-the-isee-3-ice-spacecraft/

Radio amateurs receive NASA ISEE-3 / ICE Spacecraft
https://amsat-uk.org/2014/03/09/radio-amateurs-receive-nasa-isee-3ice-spacecraft/

Radio hams help attempts to command NASA spacecraft
https://amsat-uk.org/2014/05/21/radio-hams-help-attempts-to-command-nasa-spacecraft/

ISEE-3/ICE on Facebook https://www.facebook.com/ISEE3returns

UK Takes Aim at Commercial Spaceflight

skylon_hangar_1l

Skylon – Credit Reaction Engines Ltd

A space.com article reports a spaceport in the United Kingdom may be possible by 2018.

Pending a regulatory report to be published this July and a technical feasibility study that is underway with the country’s National Space Technology Programme (NSTP), it is possible that the country could host a spaceport within the next five years.

A new National Space Flight Coordination Group, chaired by the U.K. Space Agency, will oversee these reports and the future work for this U.K. spaceport. Government officials hope this will be the start of commercial spaceflight for the country.

Rob Coppinger reports the United Kingdom’s first Spaceport could be at Lossiemouth, which is already home to one of the largest Royal Air Force (RAF) bases in the country.

At 57.7°N Lossiemouth would be the most northerly Commercial Spaceport in the World. Lossiemouth is slightly further North than the Kodiak spaceport in Alaska which is at 57.4°N.

Read the article at
http://www.space.com/26076-united-kingdom-commercial-spaceflight-spaceport-2018.html

LituanicaSAT-1 FM Transponder Active until June 4

LituanicaSAT-1 Camera and FM Voice Transponder

LituanicaSAT-1 Camera and FM Voice Transponder

The LituanicaSAT-1 team have announced the FM transponder should be active until June 4, 2014.

Dear radio amateurs,

Due to favorable orbit conditions LituanicaSAT-1 is now operating under 100% sunlight until about 4th of June. Thus we have decided to turn the transponder on during this period. The CW fm beacon and packet telemetry are also on right now. 

73,
Laurynas Maciulis
LY1LM, LY5N

LituanicaSAT-1 FrequenciesFrequency are approximately 435.1755 MHz (+/- 10 kHz Doppler shift) for the downlink and 145.950 MHz for the uplink with 67 Hz CTCSS.

The tiny satellite is just 10x10x10 cm with a mass of 1.090 kg yet it has a VGA camera and a 145/435 MHz FM voice transponder, designed and built by Lithuanian radio amateurs.

The prototype of the FM repeater has been operating in the home of its designer Žilvinas Batisa LY3H in Elektrėnai, Lithuania. Further information at http://ly3h.epalete.com/?p=303

FM transponder operating techniques http://www.dk3wn.info/p/?p=44412

LituanicaSAT-1 CubeSat https://amsat-uk.org/2014/02/27/lituanicasat-1-cubesat/

Reports should be sent to: ly5n  at qrz.lt

LituanicaSAT-1 was built by students from Vilnius University.