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The first industrial and commercial network-type energy storage project of Liangshan Ecological Company of Huzhou Industrial Group was officially put into operation.

on March 23, the 3.44MWh industrial and commercial network energy storage project invested and constructed by liangshan ecological company, a subsidiary of Huzhou industrial group, was officially put into operation in Shaoxing. The project is driven by the innovation of integrated energy business by Liangshan Ecological Company and jointly built with Huawei Digital Energy. It is committed to building a green and low-carbon transformation benchmark project in the textile industry and injecting new momentum into the sustainable development of the industry and the optimization and upgrading of the energy structure.

This project relies on the layout advantages of Liangshan Ecological Company in the field of comprehensive energy and the technical research and development strength of Huawei Digital Energy, and adopts 16 sets of Huawei 215kWh industrial and commercial wind-liquid intelligent cooling network energy storage, which can realize 2 charge and discharge cycles per day. After the project is put into operation, it is expected to save users more than 800000 yuan in electricity costs each year, while reducing carbon dioxide emissions by about 1200 tons, and effectively transform the concept of green development into visible and tangible ecological and economic benefits. it highlights the practical responsibility of state-owned enterprises in promoting the low-carbon transformation of the industry.

popular science time | what is industrial and commercial network type energy storage?

Industrial and commercial network energy storage is an advanced energy storage system used in industrial parks, commercial buildings and other scenarios. Its core “construction network type” technology enables the system to actively establish and maintain the voltage and frequency of the power grid like a generator, and realize independent operation without relying on the main network. This not only greatly improves the reliability of enterprise power supply, supports off-grid black start and island operation, and ensures continuous power supply of critical loads, but also improves the level of green power consumption through optical storage coordination, and reduces the cost of electricity consumption by using peak-valley power price difference. At the same time, the system can provide inertia support for the local power grid and enhance the stability of the power grid, which is the development direction encouraged by the current policy.

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