Русский

The United States is expected to use "AI+lasers" to deal with space debris in the future

790
2023-10-20 13:51:14
Посмотреть перевод

Due to the increasing threat of space debris in low Earth orbit around the Earth, space agencies around the world are becoming increasingly concerned about this. According to a new study funded by the National Aeronautics and Space Administration (NASA), it may be possible to send space debris that may be at risk of colliding with orbiting spacecraft to safer orbits through a laser network deployed in space in the future, the US "Space" website said on the 19th.

The report states that space debris has an increasing impact on the safety of spacecraft in various countries. When Amazon launched two internet prototype satellites on the 6th, it was forced to delay the launch for 6 minutes to avoid colliding with space debris.

In July of this year, due to the same reasons, the launch of India's historic "Lunar Ship 3" probe was also forced to be postponed. Although space debris has been a concern for decades, efforts to address this space debris have only recently truly begun to get back on track. The idea proposed by the Space Systems Warfare Research Laboratory at the University of West Virginia is to install artificial intelligence (AI) controlled space-based lasers on satellites or other specialized platforms for monitoring space debris. When a space debris is suspected of colliding with valuable space assets such as the International Space Station or satellites, laser pulses are used to push them into safer orbits.

According to the report, the statement released by the laboratory states: "Our goal is to develop a reconfigurable space-based laser network and AI algorithms. These algorithms will make this network possible and maximize its benefits." The plan has received funding from NASA and is still in its early stages. The ultimate goal is that the system will decide on which lasers to use to target a certain space debris, At the same time, ensure that the generated trajectory does not collide.

It is said that measuring the risk level of space debris is quite difficult because not every object in orbit can be tracked. According to data from the European Space Agency, the radar system on the Earth's surface is currently tracking approximately 34600 space debris, but there may still be 130 million fragments in orbit that cannot be accurately detected or tracked due to their small size. The report states that although the mass and volume of these space debris are small, their speed is fast enough to pose a threat to orbiting satellites or spacecraft.

Previously, countries had a preference for clearing space debris, but whether it was using high-strength materials to create "space debris nets" for salvage or using high-energy lasers for burning, there were limitations. In contrast, using space-based lasers to process small space debris may be more practical, as they can be sent into predetermined orbits using laser pulse irradiation, with relatively low power requirements for lasers. The report states that using multiple lasers can more effectively alter the trajectory of space debris, which "cannot be achieved by a single laser".

In March of this year, NASA released a report showing that space-based lasers are not affected by weather compared to ground based lasers. The report states that this AI powered space cleaning system not only has cost advantages, but its precise tracking ability for space debris also helps improve the safety of space launches.

Source: Global Times

Связанные рекомендации
  • Fiber laser and deburring machine have improved the production efficiency and manufacturing capability of MITS Alloy

    The heavy-duty aluminum Ute tray and roof series of MITS Alloy have been greatly welcomed and demanded.The company is headquartered in Newcastle and was founded by Tim Lightfoot and Tony Brooks in January 2015. Tim's existing business, Safety MITS, provides maintenance equipment for mining, earthwork transportation, transportation, and related industries. They jointly determined that the four-whee...

    2024-05-15
    Посмотреть перевод
  • Due to breakthroughs in microchip photonics, microwave signals have now become very accurate

    Zhao Yun/Columbia Engineering Company provided an advanced schematic of a photonic integrated chip, which aims to convert high-frequency signals into low-frequency signals using all optical frequency division.Scientists have built a small all optical device with the lowest microwave noise ever recorded on integrated chips.In order to improve the performance of electronic devices used for global n...

    2024-04-01
    Посмотреть перевод
  • Tunoptix makes breakthrough progress in meta optical platform

    Tunoptix, a developer of computational meta-optics, based in Seattle, WA, has made what it calls “a breakthrough in mobile-scale spectral imaging”. The company’s latest meta-optical platform captures high-fidelity spectral signatures across the visible-to-NIR spectrum in a compact form factor smaller than 1 cm3, consuming less than 500 mW, and operating at real-time frame rates.Tunoptix’s ultra-c...

    07-02
    Посмотреть перевод
  • Shanghai Institute of Optics and Fine Mechanics has made significant breakthroughs in the study of laser damage performance of mid infrared anti reflective coatings

    Recently, the Thin Film Optics Research and Development Center of the High Power Laser Component Technology and Engineering Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, collaborated with researchers from Hunan University and Shanghai University of Technology to make new progress in the study of laser damage performance of mid infrared anti reflect...

    04-07
    Посмотреть перевод
  • Researchers have created the first organic semiconductor laser to operate without the need for a separate light source

    OLED is located at the top and is formed by an organic layer between the contacts. Apply voltage to it, inject charge and generate light, which in turn excites organic laser. Organic lasers contain a grating that can generate feedback and diffract some of the laser out of the structure.Organic laserResearchers have created the first organic semiconductor laser to operate without the need for a sep...

    2023-11-29
    Посмотреть перевод