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Modified STATCOM control strategy for fault ride‑through capability enhancement of grid‑connected PV/wind hybrid power system during voltage sag

机译:改进的STATCOM控制策略,用于在电压暂降期间提高并网光伏/风电混合系统的故障穿越能力

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This paper proposes the employment of Static Synchronous Compensator (STATCOM) in reactive power compensation to enhance the Fault Ride-Through (FRT) capability and improve the dynamic performance of a grid-connected PV/wind hybrid power system during the transient grid disturbances. The hybrid power system consisting of 9 MW Doubly Fed Induction Generator (DFIG)-based wind farm and 1 MW PV station is integrated with 100 MVAR STATCOM at the Point of Common Coupling (PCC) bus. The dynamic performance of the PV/wind hybrid power system with the proposed STATCOM controller is analyzed and compared with another FRT control strategy during a grid voltage sag. The FRT control strategy is based on the injection of reactive power from the hybrid system to enhance the FRT capability during the grid faults, and also activation of the outer crowbar protection system to protect the DFIG. On the other hand, the proposed STATCOM controller adjusts the PCC bus voltage during the grid disturbances by dynamically controlling the amount of reactive power injected to or absorbed from the electrical grid. Modeling and simulation of the proposed hybrid power system have been implemented using MATLAB/SIMULINK software. The effectiveness of both the proposed STATCOM controller and the FRT control strategy is evaluated during a 50% grid voltage sag. The simulation results illustrate that the STATCOM controller decreases significantly the level of voltage drop during the voltage sag, maintains the injected active power from the PV station at its rated value, and protects effectively the PV DC-link voltage from overvoltage. Moreover, when the STATCOM controller is employed, the injected active power from the wind farm is improved considerably and the oscillations of the DFIG rotor speed are reduced efficiently during the fault. Furthermore, the comparison confirms the superior dynamic performance of the STATCOM controller in enhancement the FRT capability as compared with the FRT control strategy.
机译:本文提出在无功补偿中使用静态同步补偿器(STATCOM),以增强故障穿越能力(FRT),并改善并网PV /风电混合系统在瞬态电网扰动期间的动态性能。混合动力系统由基于9 MW双馈感应发电机(DFIG)的风电场和1 MW PV电站组成,在公共耦合点(PCC)总线上与100 MVAR STATCOM集成在一起。分析了带有建议的STATCOM控制器的光伏/风电混合动力系统的动态性能,并将其与电网电压骤降期间的另一FRT控制策略进行了比较。 FRT控制策略基于混合动力系统注入的无功功率,以增强电网故障期间的FRT能力,并激活外部撬棍保护系统以保护DFIG。另一方面,提出的STATCOM控制器通过动态控制注入电网或从电网吸收的无功功率的量来调节电网扰动期间的PCC总线电压。已使用MATLAB / SIMULINK软件对提出的混合动力系统进行了建模和仿真。所建议的STATCOM控制器和FRT控制策略的有效性都在50%电网电压骤降期间进行了评估。仿真结果表明,STATCOM控制器可在电压骤降期间显着降低电压降的水平,将来自光伏电站的注入的有功功率保持在其额定值,并有效地保护光伏直流母线电压免受过电压的影响。此外,当采用STATCOM控制器时,从风电场注入的有功功率将大大提高,并且在故障期间可有效降低DFIG转子速度的波动。此外,该比较证实了与FRT控制策略相比,STATCOM控制器在增强FRT功能方面具有出色的动态性能。

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