繁体中文

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

663
2023-10-26 16:20:40
查看翻譯

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

相關推薦
  • SPIE Optics and Photonics 2025: Plenary Session Evaluation of Organic Materials for Optoelectronics

    The use of organic materials in photonics has given rise to many device innovations for applications in sensing, semiconductors, lasers, and more. The Organic Photonics + Electronics plenary session at SPIE Optics + Photonics 2025, taking place through 7 August in San Diego, California, sampled some current research efforts in this subfield, and looked at developments on the horizon.Ruth Shinar d...

    08-06
    查看翻譯
  • POSTECH launches a new type of fiber optic fusion splicer FS-23 series

    FOSTEC announced on the 8th that a new type of fiber fusion splicer has been launched. The newly launched FS-23 series is a fusion splicer that can be used for fiber optic operations in long-distance optical networks and CCTV optical networks. It not only has a small size and light weight, but also has a sturdy design and a long-lasting battery, which can provide high-precision performance.A perso...

    2024-01-08
    查看翻譯
  • The UK government plans £ 10.5 million to support laser wire feeding

    On the first day of the 2025 Paris Air Show, the UK government announced a £ 250 million investment to support sustainable aerospace programs, with £ 48.5 million earmarked for funding additive manufacturing projects led by Airbus and GKN Aerospace. Among them, £ 10.5 million will be injected into the GKN Integrated System Level Aerospace Structure Assembly (ISLAA) program, with the aim of utilizi...

    06-23
    查看翻譯
  • Abnormal relativistic emission generated by strong interaction between laser and plasma reflector

    The interaction between strong laser pulses and plasma mirrors has been a focus of recent physical research, as they generate interesting effects. Experiments have shown that these interactions can generate a nonlinear physical process called high-order harmonics, characterized by emitting extreme ultraviolet radiation and brief flashes of laser light.Researchers from the Czech Extreme Light Infra...

    2023-12-04
    查看翻譯
  • Cambridge University researchers use lasers to "heat and strike" 3D printed steel

    According to the University of Cambridge, researchers have developed a new method for 3D printing metal, which can help reduce costs and more effectively utilize resources. This method, developed by a research team led by the University of Cambridge, allows structural modifications to be "programmed" into metal alloys during 3D printing - fine-tuning their performance without the need for thousand...

    2023-11-03
    查看翻譯