Receive SSTV from Space June 29-July 1

Receive SSTV from Space June 29-July 1

 

ISS SSTV image 2 received by Mike Rupprecht DK3WN April 12, 2016 at 1556 UT

ISS SSTV image received by Mike Rupprecht DK3WN April 12, 2016 at 1556 UT

ARISS Russia is planning a special Slow Scan Television (SSTV) event  from the International Space Station Station around 09:00 GMT on Friday, June 29 and continuing until 18:30 GMT Sunday, July 1.

Supporting this event is a computer on the ISS Russian Segment, which stores images that are then transmitted to Earth using amateur radio, specifically the onboard Kenwood TM-D710E transceiver.

These images will commemorate the various satellites that were hand-deployed from the ISS. These will include the first satellite deployment from ISS: Suitsat-1/Radioskaf-1 which was developed by ARISS and deployed in February 2006.

The transmissions will be made on 145.800 MHz FM using the PD-120 SSTV mode.

Note the ISS transmissions use the 5 kHz deviation FM standard rather than the narrow 2.5 kHz used in Europe. If your transceiver has selectable FM filters try using the wider filter. Handheld transceivers generally have a single wide filter fitted as standard and you should get good results outdoors using just a 1/4 wave whip antenna.

The ISS Fan Club site will show you when the space station is in range http://www.issfanclub.com/

ISS SSTV information and links at https://amsat-uk.org/beginners/iss-sstv/

Post your images on the ARISS-SSTV gallery at http://www.spaceflightsoftware.com/ARISS_SSTV/

If you don’t have an amateur radio receiver you can still listen to the ISS by using an Online Radio, also known as a WebSDR. Select a Frequency of 145800.0 kHz and Mode FM:
• Farnham WebSDR when ISS is in range of London http://farnham-sdr.com/
• R4UAB WebSDR when ISS is over Russia

Please note that the event is dependent on other activities, schedules and crew responsibilities on the ISS and subject to change at any time. You can check for updates regarding planned operation at:
ISS Ham https://twitter.com/RF2Space
ARISS Status https://twitter.com/ARISS_status
ARISS SSTV Blog https://ariss-sstv.blogspot.com/
AMSAT Bulletin Board http://www.amsat.org/mailman/listinfo/amsat-bb

If you receive a full or partial picture from the Space Station your Local Newspaper may like to know http://www.southgatearc.org/news/2016/july/now-is-a-great-time-to-get-ham-radio-publicity.htm

The RSGB produce a handy Media Guide and Template press release for anyone to download and adapt, see http://rsgb.org/main/clubs/media-guide-for-affiliated-societies/

An example of the publicity you can get for the hobby by telling your Local Newspaper
https://amsat-uk.org/2015/04/15/iss-sstv-in-the-press/

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m5aka

AMSAT-UK

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Crew Sets Up Station for New Research Delivery Aboard Dragon

Crew Sets Up Station for New Research Delivery Aboard Dragon

The Canadarm2 and the Caspian Sea
Canada’s 57.7-foot-long robotic arm, also known as the Canadarm2, with a latching end effector at its tip (used to grapple approaching spacecraft and portable data grapple fixtures) is pictured in the foreground as the International Space Station was orbiting over the Caspian Sea.

The Expedition 56 crew members are configuring the International Space Station for several new experiments being delivered on the upcoming SpaceX Dragon cargo mission. The orbital residents also explored space physics and serviced U.S. spacesuits.

NASA astronauts Drew Feustel and Ricky Arnold worked on science hardware today to support new research being delivered aboard Dragon when it arrives Monday at 7 a.m. EDT. The duo also continued studying the robotics procedures necessary to capture Dragon after its approach and rendezvous next week.

Feustel cleaned a mouse habitat for the Rodent Research-7 experiment observing microbes in the gastrointestinal system in mice. Arnold checked out the functionality of the Veggie facility that will process plants for the Veg-03 study researching how to grow food in space.

Flight Engineer Serena Auñón-Chancellor looked at how cement solidifies in space exploring its microstructure and material properties. Results could impact the design of lightweight space habitats and improve cement and concrete processing on Earth.

Finally, Alexander Gerst of the European Space Agency looked at spacesuit gear and set up the Quest airlock for future spacewalk operations. Gerst purged nitrogen from the suit’s oxygen lines and helped ground controllers prepare for overnight oxygen leak checks.

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Mark Garcia

ISS

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Crew Gets Ready for Dragon, Studies Space Impacts on Health and Physics

Crew Gets Ready for Dragon, Studies Space Impacts on Health and Physics

The SpaceX Dragon cargo craft is pictured in the grips of the Canadarm2
The SpaceX Dragon cargo craft is pictured in the grips of the Canadarm2 robotic arm as the International Space Station was orbiting above northern Africa on May 5, 2018.

The Expedition 56 crew members are getting ready for the arrival next week of the 15th SpaceX Dragon mission to the International Space Station. The space residents also explored how microgravity impacts health and physics today while setting up a variety of cubesats for deployment.

The Falcon 9 rocket from SpaceX that will launch the Dragon space freighter into Earth orbit is due to lift off Friday at 5:41 a.m. EDT and take a three-day trip to the orbital laboratory. The commercial space freighter will be loaded with almost six thousand pounds of new science experiments, crew supplies and space station hardware.

NASA astronaut Ricky Arnold will be backed up by Commander Drew Feustel in the Cupola when he commands the Canadarm2 to grapple Dragon Monday at 7 a.m. The duo is reviewing procedures and training on a computer this week for the rendezvous and capture activities. Robotics controllers on the ground will then take over after the capture and remotely install Dragon a couple of hours later to the Harmony module where it will remain for 32 days. NASA TV will broadcast live the Dragon science briefings, launch, capture and installation activities.

Feustel started the workweek collecting and stowing biological samples for the Multi-Omics study that is observing how gut microbes may affect an astronaut’s immune system. He then worked on the Atomization experiment that is researching liquid spray processes to potentially improve the design of jet and rocket engines.

NASA astronaut Serena Auñón-Chancellor installed a cubesat deployer on a multi-purpose experiment platform that will soon be placed outside the Japanese Kibo laboratory module. It will deploy nine different cubesats to continue space research and demonstrate space applications.

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Mark Garcia

ISS

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Crew Researching Microbes and Plants For Space and Earth Benefits

Crew Researching Microbes and Plants For Space and Earth Benefits

Expedition 56 Flight Engineer Alexander Gerst of the European Space Agency
Astronaut Alexander Gerst is seated in the Columbus laboratory module participating in the Grip study. Grip is researching how the nervous system adapts to microgravity. Observations may improve the design of safer space habitats and help patients on Earth with neurological diseases.

The Expedition 56 crew members researched microbes and plants today and conducted more eye exams to benefit future space residents as well as people on Earth. The Cygnus space freighter continues to be packed for its release in July as robotics controllers get ready to inspect the vehicle.

NASA astronaut Serena Auñón-Chancellor stowed genetically modified microbes in a science freezer that will be analyzed for their ability to compete with petrochemical production processes on Earth. Flight Engineer Ricky Arnold, also from NASA, thinned plants for the Plant Habitat-1 experiment that is comparing plants grown in microgravity to those grown on Earth.

Arnold and Auñón-Chancellor later joined Commander Drew Feustel for more eye checks. The trio used optical coherence tomography to capture 2D and 3D imagery of the eye to help doctors understand how living in space affects eyesight.

European Space Agency astronaut Alexander Gerst was packing Cygnus with trash and old gear today ahead of its July 15 release.

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Mark Garcia

ISS

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Crew Studies How Space Affects Time Perception, Exercise and Eyesight Today

Crew Studies How Space Affects Time Perception, Exercise and Eyesight Today

Cygnus and Soyuz spacecraft
This fish-eye lens view from a window on the Cupola shows the U.S. Cygnus commercial space freighter with its cymbal-like Ultra-Flex solar arrays attached to the Unity module. To its right is the Soyuz MS-09 spacecraft docked to the Rassvet module.

Quite a wide variety of science activities took place today aboard the International Space Station exploring time perception, exercise and eyesight. The Expedition 56 crew members also worked on station plumbing, stowed satellite deployer gear and checked out communications gear.

Two-time station resident Alexander Gerst started his morning helping doctors understand how living in space alters time perception and impacts crew performance. Later he strapped himself into an exercise bike and attached electrodes to his chest to monitor his pulmonary function during the workout session.

NASA astronauts Ricky Arnold, Drew Feustel and Serena Auñón-Chancellor teamed up for eye exams with an ultrasound device to study microgravity’s effects on eyesight. The scans were downlinked real-time to scientists on Earth observing the retina and optic nerve while monitoring the health of the astronaut’s eyes.

Auñón-Chancellor started her day changing out a filter and valve in the station’s bathroom located in the Tranquility module. She then checked out Wi-Fi gear connected to antennas installed during a March 29 spacewalk after assisting Feustel in the Japanese Kibo lab module. The duo stowed gear after Wednesday’s successful deployment of a satellite to demonstrate space junk clean up.

Arnold was set to install radio frequency tags today to improve tool tracking but that task was postponed till after the Cygnus cargo ship departs July 15. He then moved on to emergency communication tests with control centers around the world before light maintenance work on a 3D manufacturing device.

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Mark Garcia

ISS

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