Deutsch

Aalyria plans to establish a laser link mesh network to quickly transmit data on land, in the air, in the ocean, and in space

847
2023-10-26 16:20:40
Übersetzung anzeigen

Aalyria is establishing a laser link mesh network to quickly transmit data on land, in the air, in the ocean, and in space. The maritime part of the plan is about to be pushed forward.

Recently, this DC based laser communication network company announced the signing of a memorandum of understanding with HICO Investment Group, which focuses on investing in shipping and logistics companies. According to the agreement, Aalyria will deploy up to 200 Tightbeam laser terminals on ships in the Middle East, Asia, Europe, Africa, and the Caribbean.

Good grid division: Aalyria stood out from stealth last year, obtained a large number of IPs from Alphabet, and plans to completely change connectivity. The company has two products:
Tightbeam is a laser terminal that can simultaneously transmit speeds of 100 Gbps per wavelength in both directions. This terminal can be connected to ground, sea, air, and space platforms.

Spacetime is a network orchestration software that can draw the most effective route for a segment of data on a large network. The company has signed a contract with Rivada Space Networks to coordinate communication for its planned 600 bird constellations.

Aalyria's laser communication method can eliminate the need to lay miles of fiber optic cables or connect to pure satellite networks for fast connectivity.

It's a bit like going from copper to fiber optic, going back to the past, "Aalyria CEO Chris Taylor told Payload. This is a very big turning point in connectivity.

Contract: According to this memorandum of understanding, Aalyria will collaborate with HICO to deploy its second-generation universal joint laser terminals on up to 200 ships in multiple regions. This is the first commercial agreement signed by the company to deploy terminals on board ships.

Source: Laser Network

Ähnliche Empfehlungen
  • Research Progress in High Efficiency Supercontinuum Spectra in Specific Wavebands Made by Shanghai Optics and Machinery High Power Laser Unit Technology Laboratory

    Recently, the High Power Laser Unit Technology Laboratory of Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in research on high efficiency supercontinuum in specific bands. The relevant research results were published in the Journal of Lightwave Technology under the title of "Strong Anti Stokes and flat supercontinuum in specified band based on non ...

    2023-10-17
    Übersetzung anzeigen
  • Scene Cinemas Unveils Cinematic Changes with IMAX with Laser Upgrade

    Under the visionary leadership of acclaimed producer Hisham Abdel Khalek, Scene Cinemas proudly presents a revolutionary upgrade to its multiplex – IMAX with Laser. This cutting-edge upgrade, featuring a next-generation laser projection and multi-channel sound system exclusively for IMAX theaters, promises an unmatched cinematic journey.IMAX with Laser has a state-of-the-art 4K laser project...

    2023-12-07
    Übersetzung anzeigen
  • Photonics leaders call for EU to implement € 2 billion plan

    Photonics21 has released a new position paper urging the European Commission to create a € 2 billion ($2.35 billion) independent plan for photonics in the 2028-2034 budget, and warning that Europe must 'invest in light, otherwise it will fall into darkness'.Channelled through the European Union’s Multiannual Financial Framework (MFF), the funding is designed to unlock a further €6–8 billion from i...

    10-14
    Übersetzung anzeigen
  • Tianjin University's Photoacoustic Remote Sensing Microscopy Technology Breakthrough New Heights

    Recently, Professor Tian Zhen's team from Tianjin University has made a breakthrough in the field of photoacoustic remote sensing microscopy technology and successfully developed a new type of non-destructive testing method. This technology uses Kaplin high-power femtosecond laser as the key light source, further optimizing the solution to the internal flaw detection limitations of inverted chips,...

    2024-04-16
    Übersetzung anzeigen
  • 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
    Übersetzung anzeigen