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Showing posts with label NASA. Show all posts
Showing posts with label NASA. Show all posts

Friday, July 21, 2023

An Asteroid loaded with $10 quintillion worth of Metals edges closer to US reach

Previously mentioned, here a report excerpt.   

An Asteroid loaded with $10 quintillion worth of Metals edges closer to US reach

Filip De Mott Jul 20, 2023, 4:31 PM EDT in  BusinessInsider

NASA cleared key hurdles that allow it to launch a spacecraft to the asteroid in October.

The asteroid is thought to be made up of gold, iron and nickel, with its value estimated at $10 quintillion.

The spacecraft will launch on a SpaceX rocket, and head to the Main Asteroid Belt between Mars and Jupiter.

>  Get the inside scoop on today’s biggest stories in business, from Wall Street to Silicon Valley — delivered daily.   ... 

Sunday, July 16, 2023

NASA Wants Spaceships to Communicate With Astronauts Via Chatbot

Want to see the details of implementation of data integration hwew.

NASA Wants Spaceships to Communicate With Astronauts Via Chatbot

The agency's proprietary program will spot, communicate, and fix errors from space, beginning with the Artemis program’s Lunar Gateway.

By Adrianna Nine June 27, 2023

Chatbots are making their way into other corners of the solar system. As ChatGPT, Bard, and other artificial intelligence-powered chatbots find their way into virtually every industry here on Earth, NASA is considering bringing its own version of the technology aboard spacecraft. The proprietary interface will reportedly facilitate communications with crewmembers, beginning with the Artemis program’s Lunar Gateway.

Dr. Larissa Suzuki, a visiting researcher at NASA, announced the project at the Institute of Electrical and Electronics Engineers (IEEE) on Tuesday. The plan is to build a network capable of fielding interplanetary communications while using AI to spot and fix errors as they occur. The program—the name of which has yet to be shared with the public—will effectively work as a virtual repairman, diagnosing errors and inefficiencies and then resolving them (or, at the very least, suggesting potential fixes) when it’s impractical to perform hands-on work. 

NASA intends for the program to be easy to use. Like ChatGPT, space-bound astronauts and crewmembers down on Earth can “talk” with NASA’s program, precluding the need for complicated manuals or tiresome back-and-forth conversations with parties that aren’t directly involved. If NASA can incorporate federated learning—a collaborative approach to training deep learning models—into its interface, it could even have multiple spacecraft share their knowledge, helping the fleet locate important geology or reduce downtime up in space.    ... ' 


Wednesday, June 28, 2023

NASA Engineers Help Create Virtual World of Data

 Virtual vs Actual

NASA Engineers Help Create Virtual World of Data

NASA

Andrew Wagner, June 23, 2023

Engineers at the U.S. National Aeronautics and Space Administration Jet Propulsion Laboratory (JPL) and the California Institute of Technology (Caltech) partnered to develop software for virtually exploring relationships between points of data using artificial intelligence and three-dimensional visualization. Explained JPL's Scott Davidoff, "We made a data world where an analyst could look at any science or engineering problem and see patterns and correlations more clearly than they can in a flat version." This process, called intelligent exploration, can extract immediate insights beyond the capabilities of two-dimensional graphs "because it's literally drag and drop," according to Caltech's Ciro Donalek.  ... ' 

Friday, June 09, 2023

NASA, Partners Achieve Fastest Space-to-Ground Laser Comms Link

 NASA, Partners Achieve Fastest Space-to-Ground Laser Comms Link

NASA, May 11, 2023

The National Aeronautics and Space Administration (NASA), in partnership with satellite-based solutions provider Terran Orbital and the Massachusetts Institute of Technology Lincoln Laboratory, recorded the highest-ever data rate for optical communications technology when the TeraByte InfraRed Delivery (TBIRD) system achieved 200 gigabits per second (Gbps) throughput on a space-to-ground optical link between a satellite in orbit and Earth. Laser communications allow for higher data rates than the radio waves used in most space communications systems. NASA's Beth Keer said, "Just imagine the power of space science instruments when they can be designed to fully take advantage of the advancements in detector speeds and sensitivities, furthering what artificial intelligence can do with huge amounts of data."

Saturday, April 15, 2023

Snake Robot

New locations to explore

Nasa-JPL snake robot explores extreme terrain

Nasa's Jet Propulsion Laboratory is developing an exobiology extant life surveyor (EELS). It was conceived to explore diverse terrains and ultimately search for evidence of life.

It was tested in Canada's Athabasca glacier and Mount Meager volcano. The latter expedition was made possible by the Trebek Initiative, a partnership between the Royal Canadian Geographical Society and National Geographic.  

Saturday, April 01, 2023

AI Addressing Dangerous Solar Storms

Am a long time follower of this very dangerous and inevitable natural event. 

Deep Learning to Address Impact of Solar Storms.

NASA AI model could help world prepare for impact of solar storms

DAGGER artificial intelligence model uses NASA data to produce swift predictions, within 30 minutes of detection.

By Julia Musto    https://www.nasa.gov/feature/goddard/2023/sun/nasa-enabled-ai-predictions-may-give-time-to-prepare-for-solar-storms

NASA said Thursday that a new computer model that combines artificial intelligence and agency satellite data could help prepare for dangerous space weather. 

The model, called DAGGER (Deep Learning Geomagnetic Perturbation), uses the technical tool to analyze spacecraft measurements of the solar wind and forecast where an impending solar storm will strike on Earth – with 30 minutes of advance warning. 

An international team of researchers at the Frontier Development Lab said the model can produce predictions in less than a second, with predictions updating every minute. 

The lab is a partnership that includes NASA, the U.S. Geological Survey and the Department of Energy.

NASA's Solar Dynamics Observatory captured this image of a solar flare on Oct. 2, 2014. The solar flare is the bright flash of light at top. A burst of solar material erupting out into space can be seen just to the right of it.

NASA's Solar Dynamics Observatory captured this image of a solar flare on Oct. 2, 2014. The solar flare is the bright flash of light at top. A burst of solar material erupting out into space can be seen just to the right of it. (Credits: NASA/SDO)

The scientists had used A.I. to look for links between the solar wind and geomagnetic interruptions, applying a method called "deep learning" that trains computers to recognize patterns based on previous examples.

The model was tested against previous geomagnetic storms from August 2011 and March 2015, with DAGGER accurately forecasting the storm's impacts. Previously, models had used A.I. to forecast for specific locations, but NASA said DAGGER is the first to combine A.I. with real measurements to generate frequent and precise predictions worldwide.

"With this AI, it is now possible to make rapid and accurate global predictions and inform decisions in the event of a solar storm, thereby minimizing – or even preventing – devastation to modern society," Vishal Upendran of the Inter-University Center for Astronomy and Astrophysics in India, who is the lead author of a paper about the DAGGER model published in the journal Space Weather, said in a statement.  ... '   (Images at the link)   (plan to look at nature and goals of the model) 

Thursday, March 30, 2023

Comm Network for the Moon

Spreading Space Networks.

Lockheed Spinoff Plans to Build Communication Network for the Moon

Crescent Space will begin deploying its Parsec satellites in orbit on the Moon in 2025.

By Ryan Whitwam March 30, 2023

Humankind has been relegated to low-Earth orbit for decades, but that will change with the Artemis Program. NASA and its partners plan to establish a permanent human lunar presence, which will require infrastructure. Lockheed Martin has announced the formation of a new company called Crescent Space to start building it. Its goal is to deploy a satellite constellation in orbit of the Moon to provide communication and navigation services.

The network will be called Parsec, consisting of an indeterminate number of nodes built on established Lockheed Martin tech. Parsec will use Lockheed's Curio SmallSat platform, along with the SmartSat software and COMPASS/Horizon mission planning system. By placing enough of these compact satellites in orbit, it will be possible to maintain contact with all missions orbiting the Moon and any assets on the surface. As a bonus, the network will be able to offer accurate lunar positioning in the same way the GPS network does on Earth. So, even as the Moon becomes more congested, spacecraft and surface equipment can steer clear of other missions.  ... ' 

Monday, March 27, 2023

Configurable Robots Can Be Mixed, Matched for Tasks in Space

Configurable Robots Can Be Mixed, Matched for Tasks in Space

ACM TECHNEWS

By Interesting Engineering

March 22, 2023

The Walking Oligomeric Robotic Mobility System could revolutionize how we approach space robotics, according to MIT.

Credit: MIT

Massachusetts Institute of Technology (MIT) researchers engineered the Walking Oligomeric Robotic Mobility System (WORMS) to revolutionize space robotics.

MIT's Brooke Bensche said, "Our idea was that, with just a few parts, combined in different ways, you could mix and match and get all these different robots."

The university's Michael Brown said the system's appendages were inspired by the humble worm because each can make "similar movements as an arm, or a leg, or a backbone, or a tail."

Each configurable articulated robot carries its own motors, sensors, computer, and battery; they can be assembled individually to perform small tasks or together for more complex functions.

From Interesting Engineering

View Full Article  

Thursday, December 29, 2022

Helicopter on Mars

 Evan Ackerman talks the remarkable success of the Mars helicopter Perseverance. Nicely done NASA.  The idea of a detachable drone shows its power of application,  A means of managing opportunistic data gathering in very unordered spaces.

Mars Helicopter Just Keeps on Going 

Maybe NASA’s little Martian flyer should be the one called Perseverance   By Evan ACKERMAN

The original mission of the Mars Helicopter (named Ingenuity) was to successfully complete a single 30-second long flight on Mars. That happened back in April. After several more successful flights, Ingenuity’s 30-day mission came to an end, but the helicopter was doing so well that NASA decided to keep it flying. Several months later, JPL promised that Ingenuity would “complete flight operations no later than the end of August,” but as of late November, the little helicopter has completed 17 flights with no sign of slowing down. ... ' 

Friday, December 16, 2022

Launching a Lunar Flashlight

 Looking for ice and other components of a longer stay on other worlds. 

NASA’s Lunar Flashlight Launches to Shine a Light on Lunar Ice

By Ryan Whitwam on December 14, 2022  in ExtremeTech

A SpaceX Falcon 9 rocket blasted into space in the wee hours of Dec. 11. Its main cargo was the HAKUTO-R lunar lander from Japan’s Ispace, but NASA had a fascinating little ride-along payload on the rocket, too. The agency’s Lunar Flashlight mission is now en route to the moon, where it will search for water in regions that haven’t seen sunlight for billions of years.

The Lunar Flashlight is a compact 6U CubeSat, sporting mostly off-the-shelf hardware like a conventional lithium-ion battery and HaWK solar panels. There’s also a flashlight of sorts, as the name implies. It’s actually an infrared spectrometer that emits light in four different wavelengths. We already know there is frozen water on the moon, but the Lunar Flashlight aims to create a more accurate map of its distribution. It will scan the shadowy depths of craters where sunlight has never reached, mostly in the higher latitudes.

When shined on the lunar surface, the infrared lasers will bounce back after striking regolith. However, water ice will absorb light and give away its presence. Locating an accessible supply of ice on the moon could be a boon to future missions, which could use lunar water to make fuel for a return trip to Earth or a trip to the outer solar system.

The Lunar Flashlight is currently meandering its way to the moon, but it’s not using standard hydrazine fuel, which is highly toxic. Instead, NASA is testing the Advanced Spacecraft Energetic Non-Toxic (ASCENT) monopropellant. The Lunar Flashlight should reach the moon in about four months, and when there, it will use its green engine to enter a near-rectilinear halo orbit (NRHO), making it just the second spacecraft to do so. The first was NASA’s Cislunar Autonomous Positioning System Technology Operations and Navigation Experiment (CAPSTONE) mission, which proved this novel orbit was workable earlier this year.  ,,, ' 

Wednesday, December 07, 2022

Robot Design May Revolutionize How We Build Things in Space

Obviously, but what developments should we wait for?  Specify?  Need?

Robot Design May Revolutionize How We Build Things in Space

SciTechDaily, December 1, 2022

Researchers at the U.K.'s University of Lincoln (UoL) designed an end-over-end walking (E-Walker) robot for space construction projects. The E-Walker robot features seven degrees-of-freedom motion capabilities. UoL's Manu Nair and colleagues conducted an exercise in which they tested the E-Walker on the in-orbit assembly of a 25-meter (82-foot) Large Aperture Space Telescope. Nair said, "The proposed innovative E-Walker design proves to be versatile and an ideal candidate for future in-orbit missions. The E-Walker would be able to extend the life cycle of a mission by carrying out routine maintenance and servicing missions post assembly, in space." .... ' 

Friday, December 02, 2022

Race to the Moon?

 I continue to be interested in the supply chain processes involved.

China and NASA are racing to the moon. Side-by-side photos hint NASA has the edge, but China's secrecy makes the race hard to call.    By Morgan McFall-Johnsen Nov 30, 2022 in BusinessInsider

two rocket launches at night split image with Long March-2F on the left and nasa space launch system on the right

China's Shenzhou 15 mission, left, lifted off on Tuesday, one week after NASA launched its Artemis I mission to the moon, right. CNS/AFP/Getty Images; NASA/Joel Kowsky

China and NASA are racing toward the first human moon landing in 50 years.

Two recent launches suggest NASA has an edge, but China could be close behind.

Side-by-side images show how NASA and China are overlapping in the new space race for the moon. ... ' 

Thursday, December 01, 2022

How Will the Space Economy Change the World?

 Good overview of Space and Economy. Not enough regards the timing and risks involved.  And how will key aspects, like supply chains,  be effectively translated into Space?  Note we need to do a key materials analysis to determine needs and sourcing,   Contact me for thoughts on Space Supply Chains. 

How will the space economy change the world?

November 28, 2022 | Article By Ryan Brukardt   in McKinsey

Space is no longer the sole domain of governments and aerospace and defense companies. Businesses that pursue emerging opportunities now may gain a first-mover advantage.    Article (6 pages) 

The passengers who boarded commercial flights just after World War II didn’t know that air travel would begin to soar over the next decade, nor did the masses who first logged onto the internet in the 1990s realize that computers would one day provide much of their news, entertainment, and social life. And today, few people understand that the space economy—broadly defined as activities in orbit or on other planets that benefit human beings—could soon transform how they live and work.

Some hints of the coming changes are apparent, including the frequent headlines about SpaceX, Blue Origin, and other private companies launching their own rockets and deploying satellite constellations. These activities, once primarily the domain of government agencies, are now possible in the private sector because recent technological advances in manufacturing, propulsion, and launch have made it much easier and less expensive to venture into space and conduct missions. Lower costs have opened the door to new start-ups and encouraged established aerospace companies to explore novel opportunities that once seemed too expensive or difficult. The technological improvements have also intrigued investors, resulting in a surge of space funding over the past five years.

The potential for innovative space applications is immense, especially if established aerospace companies form partnerships with businesses that traditionally haven’t ventured into orbit. Pharmaceutical companies might establish a lab on a space station to study cell growth, for instance, or semiconductor companies might manufacture chips in extraterrestrial factories to determine whether any aspects of the space environment, such as the lack of gravity, improve the process. Such possibilities, which might have seemed like the stuff of science fiction a few years ago, could become an essential part of a business across multiple industries in the near future.

But how and when should companies take advantage of their greater access to space and pursue emerging use cases? And how can they decide what opportunities are most promising when the technology is so nascent? Although much remains uncertain, companies that begin exploring these questions now could gain a long-term advantage.

The benefits of the space economy—with more to come

Space has long been a potent incubator for innovation—first from governments and large telcos and now from multiple private companies as well. From the launch of Sputnik 1 in 1957 through today, the space economy has delivered most of its value through satellite services, including communications and data and image collection and analysis. Satellites help large companies with multiple tasks, including inventory monitoring at distant locations, instant authorization of credit-card transactions, and international videoconferencing. Consumers use satellite technology whenever an online navigation system pinpoints their location, or when they make calls during plane flights or from rural locations that lack cell phone towers. And television viewers can thank satellites for beaming the signals that allow them to watch their favorite programs. The role of satellites in these activities is often overlooked—many people may think terrestrial computer networks provide the necessary connectivity—unless a glitch occurs and draws attention to the unobtrusive technology operating in the background.

In addition, satellites help world leaders address intractable social, environmental, and economic challenges. Consider a few ways that satellite data can provide insights: ... '

Thursday, October 13, 2022

NASA’s Aircraft will Elevate the Hunt for Critical Minerals in the US

 Note 'supply chains' to plan for their access and retrieval as needed.

NASA’s aircraft will elevate the hunt for critical minerals in the US

 The US is scrambling to build up domestic supply chains for clean energy technologies, which would require a whole lot of critical minerals

By JUSTINE CALMA / @justcalma

NASA and the US Geological Survey plan to deploy aircraft to spot critical minerals buried across the southwest US. They’ll take to the skies to map the minerals, which are crucial to the Biden administration’s plans to build up American clean energy industries.

GEMx is the name of the joint research effort, which will launch with $16 million in funding made possible through the bipartisan infrastructure law, which passed last year. Over the next five years, NASA’s ER-2 and Gulfstream V aircraft will fly over parts of California, Nevada, Arizona, and New Mexico to collect data that could point to where critical mineral resources are most abundant.

Both aircraft will carry a powerful instrument, NASA’s Airborne Visible / Infrared Imaging Spectrometer (AVIRIS), for high-altitude remote sensing. The instrument will measure reflections of light from the Earth’s surface, hyperspectral data that ranges from visible to infrared light. Each mineral reflects light slightly differently, giving it a unique “spectral signature” that can be spotted using these instruments. They’re on the hunt for minerals still in the ground and in mine waste.

Minerals deemed “critical” to the US economy and national security

The goal of the work is to identify the best places to find minerals deemed “critical” to the US economy and national security. The US’s current list of critical minerals includes lithium, nickel, and cobalt, all crucial for making rechargeable batteries, which are used to store renewable energy and power electric vehicles. There’s also tellurium used in solar cells as well as graphite and the rare-earth scandium used in fuel cells — technologies with the potential to produce clean energy. ... ' 

Friday, September 23, 2022

Will DART Save us?

  Closely following this, will be shown live on Monday. Earth will inevitably be hit by a serious space rock again, so its good to be ready now.     Lets learn as much as we can.

NASA’s DART Mission Aims to Save the World. Robotic probe sent to crash into asteroid in test of planetary defense By NED POTTER   in Spectrum IEEE

Armageddon ruined everything. Armageddon—the 1998 movie, not the mythical battlefield—told the story of an asteroid headed straight for Earth, and a bunch of swaggering roughnecks sent in space shuttles to blow it up with a nuclear weapon.

“Armageddon is big and noisy and stupid and shameless, and it's going to be huge at the box office,” wrote Jay Carr of the Boston Globe.

Carr was right—the film was the year’s second biggest hit (after Titanic)—and ever since, scientists have had to explain, patiently, that cluttering space with radioactive debris may not be the best way to protect ourselves. NASA is now trying a slightly less dramatic approach with a robotic mission called DART—short for Double Asteroid Redirection Test. On Monday at 7:14 p.m. EDT, if all goes well, the little spacecraft will crash into an asteroid called Dimorphos, about 11 million kilometers from Earth. Dimorphos is about 160 meters across, and orbits a 780-meter asteroid, 65803 Didymos. NASA TV plans to cover it live.

DART’s end will be violent, but not blockbuster-movie-violent. Music won’t swell and girlfriends back on Earth won’t swoon. Mission managers hope the spacecraft, with a mass of about 600 kg, hitting at 22,000 km per hour, will nudge the asteroid slightly in its orbit, just enough to prove that it’s technologically possible in case a future asteroid has Earth in its crosshairs.

“Maybe once a century or so, there'll be an asteroid sizeable enough that we'd like to certainly know, ahead of time, if it was going to impact,” says Lindley Johnson, who has the title of Planetary Defense Officer at NASA.

“If you just take a hair off the orbital velocity, you’ve changed the orbit of the asteroid so that what would have been impact three or four years down the road is now a complete miss.”

So take that, Hollywood! If DART succeeds, it will show there are better fuels to protect Earth than testosterone.

The risk of a comet or asteroid that wipes out civilization is really very small, but large enough that policymakers take it seriously. NASA, ordered by the U.S. Congress in 2005 to scan the inner solar system for hazards, has found nearly 900 so-called NEOs—Near-Earth Objects—at least a kilometer across, more than 95 percent of all in that size range that probably exist. It has plotted their orbits far into the future, and none of them stand more than a fraction of a percent chance of hitting Earth in this millennium.

An infographic showing the orientation of Didymos,  Dimorphos, DART, and LICIACube.The DART spacecraft should crash into the asteroid Dimorphos and slow it in its orbit around the larger asteroid Didymos. The LICIA Cube cubesat will fly in formation to image the impact.JOHNS HOPKINS APL/NASA

But there are smaller NEOs, perhaps 140 meters or more in diameter, too small to end civilization but large enough to cause mass destruction if they hit a populated area. There may be 25,000 that come within 50 million km of Earth’s orbit, and NASA estimates telescopes have only found about 40 percent of them. That’s why scientists want to expand the search for them and have good ways to deal with them if necessary. DART is the first test.

NASA takes pains to say this is a low-risk mission. Didymos and Dimorphos never cross Earth’s orbit, and computer simulations show that no matter where or how hard DART hits, it cannot possibly divert either one enough to put Earth in danger. Scientists want to see if DART can alter Dimorphos’ speed by perhaps a few centimeters per second. ... '


Friday, September 09, 2022

NASA Spends $50 Million to Develop Next-Gen Processor for Space Exploration

 Faster and more reliable. 

NASA Spends $50 Million to Develop Next-Gen Processor for Space Exploration

By Ryan Whitwam on August 18, 2022 at 8:42 am

NASA has been using the same spaceflight computers for almost 30 years, but it won’t be much longer. The agency has awarded a $50 million contract to Arizona-based Microchip Technology Inc. to “architect, design, and deliver” a next-generation space-optimized processor. NASA expects the new chip, which will be used in future lunar and planetary missions, will be 100 times faster than the chips currently in use. 

In an interview we conducted with Perseverance rover engineer Adam Steltzner, he told us the chip powering the robot was no faster than the CPU in a late 90s Mac computer — the phone in your pocket is an order of magnitude more powerful. However, you can’t just slap the latest Intel CPU in a spacecraft and call it a day. Space is a harsh environment with extreme temperatures and damaging radiation. Regular computer hardware tends not to last very long. The Ingenuity Mars helicopter is one notable exception. It runs on a Qualcomm smartphone SoC, and despite NASA’s low expectations, it’s still going strong on Mars. 

Still, for mission-critical hardware, NASA needs the most robust designs it can get. That’s why Microchip Technology is designing a new chip known as the High-Performance Spaceflight Computing (HPSC) processor. This will mean a big improvement in the capabilities of future NASA missions, and not just in raw power. Microchip Technology promises “comprehensive Ethernet networking, advanced artificial intelligence/machine learning processing, and connectivity support.” At the same time, the processor will have the best fault tolerance, radiation hardening, and security architecture possible.  ... 

Monday, August 29, 2022

Amazon Callisto Heading to the Moon

 Following the specifics of this. 

NASA Mission Carrying Voice Assistant Tech to the Moon 

Space.com,   Brett Tingley, August 26, 2022

The U.S. National Aeronautics and Space Administration (NASA)'s Artemis 1 mission scheduled to launch today (but delayed) will carry an Alexa-enabled voice assistant called Callisto into lunar orbit. Designed by engineers at Lockheed Martin, Cisco, and Amazon, Callisto aims to enhance future spaceflights with real-time data, augmented connectivity, and mission-specific feedback. Lockheed Martin said Callisto will show "how voice technology, AI [artificial intelligence], and portable tablet-based videoconferencing can help improve efficiency and situational awareness for those on board the spacecraft," as well as providing "access to real-time mission information and a virtual connection to people and information back on Earth." Amazon said Callisto will link to mission controllers using NASA's Deep Space Network, and will feature Local Voice Control, which "allows Alexa to process voice commands locally, rather than sending information to the cloud."

Friday, August 26, 2022

NASA's Space for Agriculture

In progress.

NASA'a  Space for Agriculture Tele Conference

https://www.youtube.com/watch?v=YxdY20NuhBE

I am attending, and is being recorded, Available on UTube. 

Have some ideas in the space, contact us.

Wednesday, August 10, 2022

Found and Displayed from Space


Found in Space:    This image of the Cartwheel and its companion galaxies is a composite from the James Webb Space Telescope's Near-Infrared Camera (NIRCam) and Mid-Infrared Instrument (MIRI), which reveals details that are difficult to see in the individual images alone.    Credit: NASA, ESA, CSA, STScI  

By Keith Kirkpatrick,  Commissioned by CACM Staff, August 9, 2022   ... see AI tech links below.

The July 12 release of the images from NASA's James Webb Space Telescope (JWST) has captivated and excited everyone from schoolchildren to space buffs, thanks to the vivid colors and crisp captures of the distant reaches of space. The images from the telescope, which is the largest, most complex and powerful space telescope ever constructed, brought into focus thousands of galaxies, both known and unknown, as well as so-called "cosmic cliffs" of dust and gas, and even a dying star.

The telescope detects near-infrared and mid-infrared wavelengths, the light beyond the red end of the visible spectrum, which allows otherwise hidden regions of space to be captured. Infrared light can uncover and reveal new details in images, based on the object. For example, bodies of matter such as young planets that are cool and do not emit much energy or visible brightness, still radiate in the infrared. Similarly, visible light's short wavelengths often can be obscured by space dust or a dense nebula (a group of interstellar clouds), keeping their images from being captured by telescopes that only detect visible light, such as the Hubble telescope. Infrared light, with its longer wavelengths, can penetrate through dust more easily, and infrared-based telescopes can detect lower-energy objects that often form within nebulae, such as brown dwarf stars and newly forming stars. Thus, the JWST can reveal objects that previously were hidden from view.

Although the images themselves are astounding, the real value for astronomers and scientists will come from the deep analysis of the objects contained in the images. While artificial intelligence (AI) can be used to determine which data are important to be sent for processing, thereby reducing the overall amount of information that needs to be analyzed and stored, the use of deep learning provides massive benefits in the processing and analysis of the data.

Deep learning is being used to identify and classify objects from the images and can provide a significant advantage over manual classification techniques. Using a supervised approach, a training set of previously identified objects and their specific attributes and features are fed into a system to "teach" the models to yield the desired outputs. For space object classification, the training dataset includes inputs and correct outputs to identify objects such as stars, galaxies, space dust and clouds, black holes, and other elements of interest, which allow the model to learn over time. The algorithm measures its accuracy through the loss function, adjusting until the error has been sufficiently minimized to ensure confidence.

Once the model has been developed, the algorithm is ready to process, analyze, and classify new objects found by telescopes such as the JWST, saving significant amounts of time and effort over manual analysis.

"Without AI tools to perform classification, objects in astronomical images have to be inspected by professional or amateur astronomers, with a classification determined by weighting the opinions of people," says Brant Robertson, a professor of astronomy in the astrophysics department at the University of California Santa Cruz (UCSC), who is involved in the process of analyzing recently captured JWST images. "The speed of visual inspection by humans is limited by how quickly the information can be provided and by how many people can provide useful inspections of many objects. [However,] the speed of AI classification is only limited by the amount of computing available, which is no longer a considerable limitation, and the careful preparation of the datasets."

Morpheus, a deep learning framework based on TensorFlow (an end-to-end open-source platform for machine learning), will be used to perform image classification on the data captured by the JWST. Originally developed in 2019, Morpheus is a model for generating pixel-level structural classifications of astronomical data sources. It leverages deep learning to perform source detection, source segmentation, and morphological classification on a pixel-by-pixel basis, using a semantic segmentation algorithm adopted from the field of computer vision. By using this structural data about the flux of real astronomical sources during object detection, Morpheus has demonstrated resiliency to false-positive identifications of sources, according to an evaluation using data captured by the Hubble Space Telescope.

"Deep learning models like Morpheus use the full pixel information in an image to perform classification, so all the visual features of galaxies or stars are used by the model," Robertson says. "Galaxies come in three broad categories:  elliptical galaxies are ellipsoidal and relatively smooth; disk galaxies are usually flattened and have spiral structure or dark dust lanes, and irregular galaxies tend to be clumpy and amorphous. Since each of these objects have visually distinct morphologies, the model can tell them apart." Robertson says his team can "process the largest JWST surveys with Morpheus in just a few hours with the computational resources we have here at UCSC."

In a podcast conducted a few months prior to the release of the JWST images, Robertson said the telescope may be able to look for features in the atmospheres of planets that could indicate a presence of life. While Morpheus has not yet been trained to analyze this type of date, Robertson said, "We'd very much welcome collaboration from scientists interested in AI methods for evaluating JWST spectroscopic data of atmospheres."

Indeed, the study of space is a worldwide, collaborative effort, and other researchers also have developed AI platforms that can also be used to identify, evaluate, and classify objects found by space telescopes. RobERt (Robotic Exoplanet Recognition) is a deep neural network created by Ingo Waldmann and his team at the U.K.'s University College London, which used more than 85,000 simulated light curves from five classes of exoplanets to train RobERt to recognize the presence of specific molecules and gases in exoplanets' atmospheres. The platform was used to model exoplanet data from the Hubble Space Telescope, and after training, RobERt was able to identify molecules such as water, carbon dioxide, ammonia, and titanium oxide in light curves from real exoplanets with 99.7% accuracy. 

Keith Kirkpatrick is principal of 4K Research & Consulting, LLC, based in New York, NY, USA.

Friday, August 05, 2022

Fan Robotics in Space

 Fan Robotics in Space

NASA's Space Robots Hit Another Milestone

ZDNet,  Liam Tung, July 26, 2022

The U.S. National Aeronautics and Space Administration's Astrobee robots have concluded the first stage of a project to assess autonomous spacecraft monitoring, maintenance, and incident response aboard the International Space Station (ISS). Electric fans propel each 12-inch-wide cube-shaped robot, which can independently return to a docking station to recharge. Each robot also has a perching arm that can grip handrails or help astronauts. The completed project phase involved two Astrobees, Bumble and Queen, working independently alongside astronauts in separate areas of the station. Bumble tested its navigation skills in ISS's Harmony module as it collected new station mapping data, while Queen recorded its first 360-degree panoramic image of the ISS's interior.  .... '