An innovative control method for adjusting the capacitor bank voltage of the hybrid energy storage system for a PMSG based wind turbine

M. Eydi, B. Asaei, Javad Farhang, Reza Emamalipour
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Abstract

The increasing growth of wind power plants has resulted in an increase in their impact on the stability of the power system. In this case, for ensuring the grid stability, these resources must inject an almost constant power into the grid. One way to produce a constant power is to use a hybrid energy storage system. In this method, the maximum power is obtained from the wind. The smoothed power is delivered to the grid and the fluctuations are compensated by the energy storage system. One of the challenges in this method is that during the control by compensating the power fluctuations by means of the energy storage system, the energy level of these resources varies. The other challenge is to extend the energy storage system lifetime during its operation to meet the needs of the power system. In this paper, a method is proposed to control the capacitor and the battery charge and discharge amount in a hybrid energy storage system. In this approach, by injecting the feed-forward current into the battery reference current, the capacitor voltage is regulated and by considering the battery condition, the feed-forward current is determined in a way that the capacitor voltage quickly reaches the ideal amount and also a current with high peak amount doesn't pass through the battery. In addition, the feed-forward current is adjusted in a way so that the unnecessary charge and discharges of the battery, which is resulted from the power division by the filter, are reduced. The functionality of the proposed method is shown in MATLAB software and Simulink environment.
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一种新颖的PMSG风力发电机组混合储能系统电容器组电压调节控制方法
风力发电厂的不断增长导致其对电力系统稳定性的影响越来越大。在这种情况下,为了保证电网的稳定性,这些资源必须向电网注入几乎恒定的功率。产生恒定功率的一种方法是使用混合能源存储系统。在这种方法中,从风中获得最大功率。平滑后的电力被输送到电网,波动由储能系统补偿。该方法面临的挑战之一是,在通过储能系统补偿功率波动的控制过程中,这些资源的能量水平会发生变化。另一个挑战是如何延长储能系统在运行过程中的寿命,以满足电力系统的需求。本文提出了一种控制混合储能系统中电容器和电池充放电量的方法。该方法通过向电池参考电流中注入前馈电流,调节电容器电压,并结合电池状况确定前馈电流,使电容器电压迅速达到理想值,且峰值量高的电流不通过电池。另外,通过调整前馈电流的方式,减少了由于滤波器分功率而造成的电池不必要的充放电。在MATLAB软件和Simulink环境中验证了该方法的有效性。
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