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Adaptive fractional integral terminal sliding mode power control of UPFC in DFIG wind farm penetrated multimachine power system

机译:DFIG风电场渗透多相电力系统UPFC的自适应分数积分终端滑模功率控制

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With an aim to improve the transient stability of a DFIG wind farm penetrated multimachine power system (MPN), an adaptive fractional integral terminal sliding mode power control (AFITSMPC) strategy has been proposed for the unified power flow controller (UPFC), which is compensating the MPN. The proposed AFITSMPC controls the dq- axis series injected voltage, which controls the admittance model (AM) of the UPFC. As a result the power output of the DFIG stabilizes which helps in maintaining the equilibrium between the electrical and mechanical power of the nearby generators. Subsequently the rotor angular deviation of the respective generators gets recovered, which significantly stabilizes the MPN. The proposed AFITSMPC for the admittance model of the UPFC has been validated in a DFIG wind farm penetrated 2 area 4 machine power system in the MATLAB environment. The robustness and efficacy of the proposed control strategy of the UPFC, in contrast to the conventional PI control is vindicated under a number of intrinsic operating conditions, and the results analyzed are satisfactory.
机译:旨在提高DFIG风电场穿透多机动力系统(MPN)的瞬态稳定性,已经提出了一种适应性分数整体终端滑动模式功率控制(ADISMPC)策略,用于补偿统一的电流控制器(UPFC) MPN。所提出的AFITSMPC控制DQ轴系列注入电压,该电压控制UPFC的进入模型(AM)。结果,DFIG稳定的功率输出有助于保持附近发电机的电气和机械电力之间的平衡。随后,各个发生器的转子角度偏差被恢复,这显着稳定了MPN。拟议的AFITSMPC为UPFC的进入模型已在Matlab环境中的DFIG风电场渗透2区域4机器电力系统中验证。与传统PI控制相比,UPFC的提出控制策略的鲁棒性和功效在许多内在的操作条件下被证明,分析的结果是令人满意的。

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