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Analyze the energy storage performance of lithium iron phosphate batteries

by:Vglory      2021-04-01
Analyzed the energy storage performance of lithium iron phosphate batteries. The lithium iron battery storage system can be used as a buffer between multiple power sources and stable power demand, adding power generation capacity from unstable power sources such as wind and solar power. The wind power generation system will cause output power vibration due to the change of wind speed, while the energy storage system provides stable reactive power compensation for the output of the wind turbine through the characteristics of fast response speed and almost equal charging and discharging cycles. At the same time, in the off-grid power generation system, the energy storage system can adjust the voltage and control the system frequency. From an economic point of view, the direct result of uncertainty in power output is the decline in customers' willingness to pay, which may lead to a decline in capital credit. The energy storage system installed with wind turbines will fluctuate and supply a stable output to the grid, thereby increasing the price of wind power. Lithium-iron battery system component system operation The lithium-iron battery energy storage system is controlled by a programmable controller (PLC) and a human-machine interface (HMI). One of the key functions of the PLC system is to control the charging time and charging rate of the energy storage system. For example, the PLC can receive real-time electricity price data and determine the charging speed of the battery system based on the maximum allowable demand, state of charge, and peak/off-peak price comparison. This decision is dynamic and can be optimized for specific situations. It integrates with the rest of the system through standardized communication inputs, control signals and power supplies. You can access the Internet via dial-up or online. It has multiple layers of protection to restrict access to its various functions, and provides customized display and alarm functions for remote monitoring. Power Conversion System (PCS) The purpose of this power conversion system is to charge and discharge batteries to provide better power supply quality, voltage support and frequency control for the local grid. It has a complex, fast, multi-quadrant, dynamic controller (DSP), and has a special control algorithm that can transform the output within the entire device range, that is, from full power cycle absorption to full power output. It can work normally with reactive power and any combination of active and reactive power requirements. The lithium iron battery pack reactor is composed of many single cells. Lithium-iron battery energy storage system can store electric energy economically, and according to the demand of large-scale power supply, its important mode is the fixed method. It is a long-life, low-protection, and high-efficiency technology that supports stepless expansion of power and energy storage capacity. Energy storage systems are especially useful for renewable energy suppliers, grid companies, and end users. Lithium-iron battery energy storage systems can be applied to all links of the power supply chain to convert intermittent renewable energy such as wind and solar energy into stable power output. Power supply optimization in remote areas, the application of delays contributed by fixed power grids and peak load limits. The energy storage system can also be used as a backup power source for substations and communication base stations. The iron-lithium battery energy storage system is environmentally friendly and has the lowest ecological impact among all energy storage technologies. Lead, cadmium and other elements are not used as important reactants. Renewable energy lithium iron battery storage system can be used as a buffer between multiple power sources and stable power demand, adding power generation capacity from unstable power sources such as wind and solar power. The wind power generation system will cause output power vibration due to the change of wind speed, while the energy storage system provides stable reactive power compensation for the output of the wind turbine through the characteristics of fast response speed and almost equal charging and discharging cycles. At the same time, in the off-grid power generation system, the energy storage system can adjust the voltage and control the system frequency. From an economic point of view, the direct result of uncertainty in power output is the decline in customers' willingness to pay, which may lead to a decline in capital credit. The energy storage system installed with wind turbines will fluctuate and supply a stable output to the grid, thereby increasing the price of wind power. Power supply in remote areas In sparsely populated remote areas, such as islands, diesel generators are usually used as a single source of energy. Due to load changes, diesel generators often run at non-rated power, resulting in a maximum reduction in fuel efficiency of about 30%. Disclaimer: Some pictures and content of the articles published on this site are from the Internet. If there is any infringement, please contact to delete it. Previous: Can the old mobile phone battery be repaired with a refrigerator?
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