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12V23A battery energy storage technology application, prospects and uses in power grids
12V23A battery energy storage technology application, prospects and uses in power grids. Energy storage technology is an indispensable basic premise for human society to move towards a low-carbon economy, and it is also a necessary condition for promoting energy-based. The proportion of lithium-ion batteries in the energy storage market continues to increase. At the same time, the energy storage market has also brought huge development space for the lithium battery industry, prompting many battery companies to layout the energy storage market. The field of lithium-ion battery energy storage has also been closely watched. Faced with huge market demand and potential, domestic energy storage companies UPS batteries are like sleeping lions ready to go. Today, the editor will introduce you to the application, prospects and uses of 12V23A battery energy storage technology in power grids.
12V23A battery energy storage technology application in power grids
1. Data center
With the continuous advancement of lithium-ion battery technology and the continuous decline in costs, the compact 12V23A battery power reduces the space occupied by 50-80%, playing an important role in data centers. Nowadays, lithium-ion battery UPS energy storage power supplies have also begun to enter data centers to provide continuous and uninterrupted power supply for IT equipment such as servers, storage, and data. Lithium-ion batteries are beginning to enter the 12V23A battery market. The editor believes that the use of lithium-ion battery UPS in data center power supply systems will become a trend.
2. Industrial control equipment
Unmanned boat intelligent lithium battery is IP67 waterproof, and the charging and discharging ports are safe and reliable
4. Financial industry
Banks and financial companies must maintain many small systems that require individual power protection. ATMs require online UPS protection to prevent possible power supply anomalies. Cost challenges include the average daily power consumption of ATMs of 1~3kW, as well as their auxiliary equipment, routine power outages or alternative power supply methods. The downtime costs caused by the inability to handle important work are quite large, and the average hourly cost of downtime will also increase as the BFSI sector adopts automated operations on a large scale.
The prospects and uses of 12V23A battery energy storage technology in the power grid
There are many types of energy storage technologies in the world that can provide a variety of services. These technologies include supercapacitors, superconducting magnetic energy storage, lead-acid batteries, lithium-ion batteries, sodium-sulfur batteries, flow batteries, flywheel energy storage, compressed air energy storage, pumped storage, etc. These different technologies can provide diversified power supply and duration, and can be applied in three levels: UPS system, peak-shaving and valley-filling power grid transmission and distribution system, and large-capacity power management system.
In terms of supplying large-capacity energy services, energy storage technology can greatly improve the power supply capacity of the power grid and enable power operators to profit from the peak-valley electricity price difference. In addition, energy storage technology can also provide many auxiliary service functions for transmission infrastructure, distribution infrastructure, user energy management, etc., such as: supplementing the rotating reserve capacity of wind and solar systems, black start, and cooperating with supervision.
Energy storage technology can be used in all aspects of the power system. First, it cooperates with traditional power generation technology at the power generation end to improve the grid connection rate of clean energy. At the power generation end, large-capacity energy storage systems can be used as auxiliary service facilities of power plants to stabilize voltage and current for unstable power sources such as solar energy and wind power. Second, in the transmission and distribution link, energy storage technology can be used in substations to achieve peak-shaving and valley-filling. The application of this link is becoming increasingly important in the United States. Energy storage technology can be used as a technical upgrade of substations in the distribution network to postpone the renewal of the power grid and reduce costs. Third, in the consumption link, energy storage technology is applied both "before the meter" and "behind the meter". As for "before the meter", power grid companies are actively investing in energy storage facilities on the east and west coasts of the United States, especially on the east coast. Because these areas are vulnerable to hurricanes, energy storage facilities can make the power grid more resilient and more stable in the face of hurricanes.
"Behind the meter", energy storage facilities provide services to users, such as Tesla's charging wall. In some parts of the United States, charging electric vehicles at a specific time every day helps the power grid to peak, and it will also be rewarding. In addition to California, states such as Illinois, New York, New Jersey, and Texas have also established good incentive policies to encourage consumers to set up energy storage or self-generation facilities behind the meter.
The important purpose of lithium-ion battery UPS is to power electrical appliances, and most of the time, lithium-ion battery UPS is to stabilize the voltage between the mains and the load. Only when the mains is interrupted will the energy stored in normal times be released and supplied to the load.
The time when lithium-ion batteries are used as energy storage power sources for UPS is not long. Before that, lead-acid batteries were the first choice for UPS power storage batteries. However, lithium-ion batteries have emerged as a new force and have been favored by users and the market in just a few years. More and more manufacturers and users prefer UPS batteries to lead-acid UPS.
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