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Load power management control for a stand alone wind energy system based on the state of charge of the battery

机译:基于电池充电状态的单独风能系统负载电源管理控制

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This paper presents a load power management control strategy for the operation of a stand-alone variable speed wind turbine with a permanent magnet synchronous generator (PMSG) based on the state of charge (SOC) of the battery. The PMSG is connected to a three phase load through a switch mode rectifier and a voltage source inverter. Battery storage system is connected to the DC-link voltage through a DC-DC bidirectional converter to maintain the DC-link voltage at constant value. Also, it is used to make the batteries bank stores a surplus of wind energy and supplies this energy to the load during a wind power shortage. The SOC changes during charges/discharges the batteries bank. The instantaneous change in the SOC and its value are used to connect/disconnect some loads to/from the consumers' load. The voltage source inverter uses a relatively complex vector control scheme to control the output load voltage in terms of amplitude and frequency under variation of wind speed and load. Control of the generator side switch mode rectifier is used to extract maximum power from available wind power. Extensive simulations have been performed using MATLAB/SIMULINK. Simulation results demonstrate that the performance of the controller is quite satisfactory.
机译:本文提出了一种负载电力管理控制策略,用于基于电池的充电状态(SOC)的永磁同步发电机(PMSG)进行独立变速风力涡轮机的负载电力管理控制策略。 PMSG通过开关模式整流器和电压源逆变器连接到三相负载。电池存储系统通过DC-DC双向转换器连接到DC-LINK电压,以将DC-Link电压保持在恒定值。此外,它用于使电池组存储剩余的风能,并在风力发电期间向负载供应这种能量。在充电/放电电池组期间的SOC变化。 SOC的瞬时变化及其值用于将一些负载连接/从消费者的负载连接/断开。电压源逆变器使用相对复杂的矢量控制方案来控制风速和负载变化的幅度和频率方面的输出负载电压。对发电机侧开关模式整流器的控制用于从可用风电中提取最大功率。使用MATLAB / SIMULINK进行了广泛的仿真。仿真结果表明,控制器的性能非常令人满意。

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