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Application of lithium iron phosphate battery

23
Nov. 2022

Industrial application of lithium iron phosphate battery

Application of new energy automobile industry:

Lithium iron phosphate batteries are widely used in passenger cars, passenger cars, logistics vehicles, low-speed electric vehicles, etc. due to their advantages of good safety and low cost. Influenced by policies, with the advantage of energy density, ternary batteries occupy a dominant position, but lithium iron phosphate batteries still occupy irreplaceable advantages in the fields of passenger cars and logistics vehicles.

Start the application on the power supply:

In addition to the characteristics of power lithium batteries, start-up lithium iron phosphate batteries also have instantaneous high-power output capabilities. Power-type lithium batteries with energy less than one degree of electricity are used to replace traditional lead-acid batteries, and BSG motors are used to replace traditional starter motors and generators. , not only has the function of idling start and stop, but also has the functions of coasting with the engine stopped, coasting and braking energy recovery, acceleration assist and electric cruise.

Applications in the energy storage market:

Lithium iron phosphate battery has a series of unique advantages such as high working voltage, high energy density, long cycle life, low self-discharge rate, no memory effect, green environmental protection, etc., and supports stepless expansion, suitable for large-scale electric energy storage, in renewable Energy power stations have good application prospects in the fields of safe grid connection of power generation, power grid peak regulation, distributed power stations, UPS power supplies, and emergency power systems.

With the rise of the energy storage market, in recent years, some power battery companies have deployed energy storage business to open up new application markets for lithium iron phosphate batteries. On the one hand, due to the characteristics of ultra-long life, safe use, large capacity, and environmental protection, lithium iron phosphate can be transferred to the energy storage field, which will extend the value chain and promote the establishment of a new business model. On the other hand, the energy storage system supporting the lithium iron phosphate battery has become the mainstream choice in the market. According to reports, lithium iron phosphate batteries have been tried to be used in electric buses, electric trucks, user-side and grid-side frequency regulation.

Compared with lead-acid batteries, lithium iron phosphate batteries have the advantages of long cycle life, safety and stability, environmental protection, and low self-discharge rate. With the continuous maturity of integrated technology and the continuous reduction of costs, lithium iron phosphate batteries are used in UPS power batteries. will be widely used.

Applications in other fields:

Lithium iron phosphate batteries are also widely used in the military field because of their good cycle life, safety, and low-temperature performance.

Lithium iron phosphate battery

Lithium iron phosphate battery energy storage system:

Lithium iron phosphate battery has a series of unique advantages such as high working voltage, high energy density, long cycle life, green environmental protection, etc., and supports stepless expansion, and can store large-scale electric energy after forming an energy storage system. The lithium iron phosphate battery energy storage system consists of a lithium iron phosphate battery pack, a battery management system (Battery Management System, BMS), a converter device (rectifier, inverter), a central monitoring system, and a transformer.

In the charging stage, the intermittent power supply or the grid charges the energy storage system, and the alternating current is rectified into direct current by the rectifier to charge the energy storage battery module and store energy; in the discharging stage, the energy storage system discharges to the grid or load, and the energy storage battery module The direct current is converted into alternating current by the inverter, and the inverter output is controlled by the central monitoring system, which can provide stable power output to the grid or load.

 

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