Views: 0 Author: Site Editor Publish Time: 2022-03-21 Origin: Site
Recently, the virtual power plant (VPP) project of Trina Solar Energy Storage (Japan) Co., Ltd. located in Birori County, Japan, passed the acceptance of the owner and achieved grid connection. This project is the first virtual power plant project of Trina Solar. The owner of the project is a well-known energy aggregator under Central Power of Japan, which has long been committed to the construction of new power systems in Japan and the commercial application of virtual power plants (VPPs). The small commercial optical storage system developed by Trina Solar in this project not only matches the local regulations in Japan with customized appearance, but also achieves expandable capacity through modular design. The project owner gives a positive evaluation to Trina Solar VPP optical storage solution.
Recently, the Japanese government officially released the sixth edition of the basic energy plan, which will increase the proportion of renewable energy power generation in Japan to 36-38% by 2030, and achieve carbon neutrality by 2050. With the development of Japan's distributed optical storage system and the proposal of the goal of building a new power system, based on the outstanding effectiveness of virtual power plant (VPP) in power grid management, system aggregation and coordination optimization, all sectors of Japan's government, industry, university and research place high hopes on the virtual power plant (VPP) and continue to introduce various support policies and subsidies.
In February 2022, as a successful demonstration of "combining the popularization of new energy with the construction of disaster response facilities", the Japanese Muggenjin Municipal Government adopted the Trina Solar distributed optical storage solution and installed nearly 100 Trina Solar storage systems in seven disaster response facility sites, benefiting people's livelihood.
From March 16 to 18 of the same year, Trina Solar grandly launched a distributed optical storage solution at the 2022 Tokyo International Solar PV E
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