1MW/2.15MWh!Aozhan energy storage project successfully connected to the grid
Recently, the Aozhan energy storage project completed its first supply work. The total capacity of the project is 1MW/2.15MWh. It has been successfully put into operation and has been running efficiently and smoothly for many days.
Recently, the Aozhan energy storage project completed its first supply work. The total capacity of the project is 1MW/2.15MWh. It has been successfully put into operation and has been running efficiently and smoothly for many days. It will support enterprises to use electricity more flexibly and flexibly and press the "accelerator key" of economic energy saving.
Valley charging and peak discharge to maximize economic benefits
Jinshang Technology (Jiaxing) Co., Ltd. is located in Jiaxing City, Zhejiang Province. The company's business scope includes fasteners, stainless steel products, metal molds, hardware products, etc. As a major province of electricity consumption in my country, Zhejiang has a large contradiction between supply and demand during the summer peak period. Especially large-scale industrial enterprises have large-scale production during the day, and it is difficult to avoid the peak of electricity consumption. The electricity load continues to rise, resulting in high production costs for enterprises.
This time, it is aimed at the needs of customers to cut peaks and fill valleys, and improve grid friendliness. Huafon Energy Storage conducts a comprehensive and in-depth analysis based on the monitoring of the remote Internet of Things meter, combined with the electricity consumption data provided by the customer, regional peak and valley electricity prices, load characteristics, and the economical load rate of the transformer, and provides the customer with a one-stop lithium battery energy storage system solution, including a set of 1MW/2.15MWh containerized energy storage systems, highly integrated lithium batteries, PCS, BMS, EMS, etc.
The energy storage system implements a charge-discharge strategy of two cycles a day, uses peak-valley price difference arbitrage and energy management to reduce the cost of demand electricity charges, improves energy utilization and power stability, helps enterprises realize peak-staggered electricity consumption, reduces electricity costs, and maximizes user benefits.
Combining Cloud and Edge to Set a Benchmark for Smart Energy Development
All energy storage devices of this project are connected to Huafon Energy Storage's "Bailu Cloud Platform" for energy monitoring and management. Customers can log in to Moose Cloud-Web/App to view all operating data of the energy storage power station, monitor in real-time, and truly achieve remote online unmanned real-time and timely response and control. Especially in large-scale energy storage application scenarios, 80% of personnel operation and maintenance costs can be directly saved and unattended.
The Bailu Cloud platform provides multi-dimensional services such as intelligent topology, comprehensive monitoring, and situational awareness for energy storage systems. Through big data statistical analysis, it realizes the mining and analysis of various operating data of energy storage equipment, battery health, etc., empowers decision-making and risk prediction of energy storage power stations, and helps customers improve power station production efficiency, reduce energy consumption levels, and increase economic benefits.
The cloud-edge collaborative architecture adopted in this project realizes the effective management of massive energy storage data and real-time perception of energy storage status. Using powerful edge computing and rapid decision-making in the cloud, it meets the needs of all scenarios of energy storage and ensures the speed and accuracy of energy storage system response.
Huafon Energy Storage strives to play the key role of energy storage in ensuring energy supply, allowing the company to win the initiative in the energy track. Its energy storage products have been widely used in markets such as the United States, Japan, Germany, and Australia, and are gradually extending overseas mature energy storage application technology and experience to China, leading the development of a new generation of power systems.
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