Showing posts with label identify. Show all posts
Showing posts with label identify. Show all posts

Tuesday, April 23, 2013

NASA TESS: Transiting Exoplanet Survey Satellite spacecraft to identify Exoplanets

An artist rendering of the Transiting Exoplanet Survey Satellite (TESS) spacecraft, to be launched in 2017. 

The TESS mission's primary goal would be to identify terrestrial planets orbiting nearby stars. 

NASA's Astrophysics Explorer Program has selected the Transiting Exoplanet Survey Satellite (TESS) Mission to fly in 2017.

TESS will follow in the footsteps of NASA's pioneering Kepler Mission, continuing the groundbreaking work of discovering Earth-size exoplanets.

NASA selected TESS and another explorer mission after a competition that evaluated proposals for the best scientific value and most feasible development plans.

TESS will use an array of four telescopes to perform an all-sky survey to discover transiting exoplanets of all sizes in orbit around the nearest and brightest stars in the sky.

Its goal is to identify terrestrial planets in the habitable zones of nearby stars that are best suited for extensive follow up observations and characterization.

TESS will collect 10 times as much data during its two-year mission as Kepler did during its first two years.

Jon M. Jenkins
SETI Institute scientist Jon M. Jenkins, co-investigator for data processing for both TESS and Kepler, will lead the development, design and operations of the TESS Data Processing Group (DPG) at NASA Ames Research Center.

The DPG will process the raw pixel data downlinked by TESS to detect the minuscule signatures of transiting exoplanets.

The DPG team will leverage the experience of the Science Operations Center of the Kepler Mission to develop a data processing facility that meets the rigorous requirements of the TESS mission at a low cost.

"It's extremely exciting to learn that the profound voyage of discovery that Kepler began in 2009 will continue with a mission to discover Earth's closest cousins," said Jon Jenkins.

Most exoplanets discovered by Kepler are hundreds of lights years from Earth.

Thursday, January 10, 2013

Autonomous Marine Robots detect and identify endangered whales

Dave Fratantoni, a scientist in the WHOI Physical Oceanography Department, does some work on the whale-detecting glider (Photo: Nick Woods, Woods Hole Oceanographic Institution)

Every year between November and January, endangered North Atlantic right whales are thought to use an area off the coast of Maine known as the Outer Fall as a breeding ground.

They are “thought to” because the ocean conditions at that time of year can make it difficult to locate them.

Two autonomous marine robots called gliders have now been used as a real time whale-detection system for researchers and to warn boats in the area to slow down to avoid striking the marine mammals.

Employed as part of an oceanographic research project led by Mark Baumgartner and Dave Fratantoni from the Woods Hole Oceanographic Institution, the two torpedo-shaped ocean-going robots are about six foot (1.8 m) long and come equipped with an iridium satellite antenna, underwater microphone, digital acoustic monitoring (DMON) instrument and specialized software that allows them to detect, classify and tally calls from four species of baleen whales – sei, fin, humpback, and right.

Used by oceanographers for around a decade, the gliders are able to move up, down and laterally through the water in a sawtooth pattern by changing their buoyancy and using their short wings to provide lift. They are also battery-powered, making them very quiet.

The two gliders were deployed on November 12 and surveyed the area for two weeks, surfacing every two hours to get a GPS position and transmit data to shore via satellite.

The scientific team arrived on November 28 with the gliders continuing their survey operations for another week, alerting the scientists to the presence of whales in the research area in real time.

“We found our first right whale on the first day that we were surveying in decent weather conditions because the gliders were up there doing the leg work for us, to tell us where the animals were in real time,” says Baumgartner.