Astro-ecology: Saving endangered animals with software for the stars
European Week of Astronomy and Space Science press release
RAS PR 18/8 (EWASS 4)
29 March 2018
A collaboration between astrophysicists and ecologists at Liverpool John Moores University (LJMU) is helping to monitor rare and endangered species and stop poaching. Astrophysical software and techniques are applied to thermal infrared imagery captured by drones to automatically detect and identify animals – even at night, when most poaching activity occurs. The drones can survey large areas of difficult terrain from above, allowing ecologists to access hard to reach areas and monitor wildlife without disturbing the animals. The project will be presented by Claire Burke at the European Week of Astronomy and Space Science (EWASS) in Liverpool on Tuesday, 3rd April.
Burke explains: “With thermal infrared cameras, we can easily see animals as a result of their body heat, day or night, and even when they are camouflaged in their natural environment. Since animals and humans in thermal footage 'glow' in the same way as stars and galaxies in space, we have been able to combine the technical expertise of astronomers with the conservation knowledge of ecologists to develop a system to find the animals or poachers automatically.”
The project is based around machine-learning algorithms and astronomical detection tools developed through the open source software, Astropy. Following an initial pilot project to test the concept with infrared footage of cows and humans filmed by drone at a farm in the Wirral, the team at LJMU has worked with Knowsley Safari and Chester Zoo to build up libraries of imagery to train the software to recognise different types of animals in different types of landscape and vegetation. Now, the team is embarking on field tests with endangered species.
“We held our first field trial in South Africa last September to detect Riverine rabbits, one of the most endangered species of mammal in the world. The rabbits are very small, so we flew the drone quite low to the ground at a height of 20 metres. Although this limited the area we could cover with the drone, we managed five sightings. Given that there have only been about 1000 sightings of Riverine rabbits by anyone in total, it was a real success,” says Burke.
The team has developed software that models the effects of vegetation blocking body heat, allowing the detection of animals concealed by trees or leaves. The system is now being refined and upgraded to compensate for atmospheric effects, weather and other environmental factors. The technical aspects of the project will be presented at EWASS by Maisie Rashman on Wednesday 4th April.
“Humidity can be an issue, but our biggest problems occur when the temperature of the ground is very similar to that of the animal we are trying to detect,” comments Rashman.
The astro-ecologists face their next field challenges in May, looking for orangutans in Malaysia and spider monkeys in Mexico, followed in June by a search for river dolphins in Brazil.
“Our aim is to make a system that is easy for conservationists and game wardens to use anywhere in the world, which will allow endangered animals to be tracked, found and monitored easily and poaching to be stopped before it happens,” says Burke.
Media contacts
Dr Robert Massey
Royal Astronomical Society
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Ms Anita Heward
Royal Astronomical Society
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Dr Morgan Hollis
Royal Astronomical Society
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Dr Helen Klus
Royal Astronomical Society
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Ms Marieke Baan
European Astronomical Society
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Science contacts
Dr Claire Burke
Liverpool John Moores University
Mob: +44 (0) 7709 187019
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Maisie Rashman
Liverpool John Moores University
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Dr Steven Longmore
Liverpool John Moores University
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Prof Serge Wich
Liverpool John Moores University
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Images and captions
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Infrared image of rhinos in South Africa. Credit: Endangered Wildlife Trust/LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/rhino_vis_ir.jpg
Visible image of rhinos in South Africa. Credit: Endangered Wildlife Trust/LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/rhino_vis_ir2.jpg
Infrared image of rhinos in South Africa taken from the drone during field tests of the astro-ecology project. Credit: Endangered Wildlife Trust/LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/rhinos_above.jpg
Infrared image of Eland in South Africa. Credit: Endangered Wildlife Trust/LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/eland.jpg
The drone at Sunrise in the Karoo Desert. Credit: C. Burke/LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/drone_desert_sunrise.jpg
The drone on field tests in South Africa. Credit: C. Burke/LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/drone_pic2.JPG
Thermal infrared imagery captured by drones can be used to detect humans, which will assist in preventing poaching. Credit: LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/humans.jpg
Infrared image of Indian elephants at Chester Zoo. Credit: Chester Zoo/LJMU
https://www.ras.org.uk/images/stories/EWASS2018/Burke/elephants_0007.png
Infrared video of Indian elephants at Chester Zoo. Credit: Chester Zoo/LJMU
Notes for editors
The European Week of Astronomy and Space Science (EWASS 2018) will take place at the Arena and Conference Centre (ACC) in Liverpool from 3 - 6 April 2018. Bringing together around 1500 astronomers and space scientists, the conference is the largest professional astronomy and space science event in the UK for a decade and will see leading researchers from around the world presenting their latest work.
EWASS 2018 is a joint meeting of the European Astronomical Society and the Royal Astronomical Society. It incorporates the RAS National Astronomy Meeting (NAM), and includes the annual meeting of the UK Solar Physics (UKSP) group. The conference is principally sponsored by the Royal Astronomical Society (RAS), the Science and Technology Facilities Council (STFC) and Liverpool John Moores University (LJMU).
Liverpool John Moores University (LJMU) is one of the largest, most dynamic and forward-thinking universities in the UK, with a vibrant community of 25,000 students from over 100 countries world-wide, 2,500 staff and 250 degree courses. LJMU celebrated its 25th anniversary of becoming a university in 2017 and has launched a new five-year vision built around four key ‘pillars’ to deliver excellence in education; impactful research and scholarship; enhanced civic and global engagement; and an outstanding student experience.
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