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Home / Technology / Sky Power: China Tests World's First Grid-Connected Airborne Wind System

Sky Power: China Tests World's First Grid-Connected Airborne Wind System

17 Jan

•

Summary

  • A Chinese firm successfully tested the world's first megawatt airborne wind power system.
  • The S2000 system generated 385 kWh feeding directly into China's local grid.
  • The floating system is designed for both urban and remote off-grid applications.
Sky Power: China Tests World's First Grid-Connected Airborne Wind System

A Chinese firm has achieved a significant milestone by testing the S2000, the world's first megawatt-class airborne wind power system capable of direct grid connection. This innovative helium-lifted platform, developed by Linyi Yunchuan Energy Technology, ascended to approximately 6,560 feet during a recent test flight in southwest China.

During its maiden grid-connected demonstration near Yibin, Sichuan Province, the S2000 generated 385 kilowatt hours of electricity, which was successfully fed into the local power grid. The system, resembling a large airship with a suspended power generation structure, is designed to access stronger, steadier wind layers at higher altitudes.

Linyi Yunchuan Energy Technology aims to deploy the S2000 for diverse applications, including powering off-grid locations like border outposts and complementing existing ground-based wind farms. The company is also initiating small-batch production, with plans to expand manufacturing capacity for key envelope materials.

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Disclaimer: This story has been auto-aggregated and auto-summarised by a computer program. This story has not been edited or created by the Feedzop team.
The S2000 is the world's first megawatt-class airborne wind power system designed to feed electricity directly into the grid.
Linyi Yunchuan conducted its maiden grid-connected test for the S2000 near Yibin in Sichuan Province, southwest China.
The S2000 targets both off-grid settings, such as border outposts, and integration with conventional ground-based wind power systems.

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