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Improving participation of doubly fed induction generator in frequency regulation in an isolated power system

机译:改善双馈感应发电机在隔离电力系统中的频率调节中的参与

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摘要

An increasing penetration of renewable power resources (particularly wind farms) is observed in power systems during the last years. There is a frequency control concern with these kinds of power resources because they do not provide the so-called inertial response. Since the doubly fed induction generator (DFIG) equipped with Variable Speed Wind Turbine (VSWT) is the mostly used type of generator in wind farms, this paper proposes a new control approach allowing the DFIG to participate more efficiently in the power system frequency control. The approach consists of three steps: (1) Estimating the active power mismatch Delta P-0 between the active electrical power and the mechanical power which appears at the first moment after the perturbance at the DFIG, (2) based on Delta P-0 determine the electrical power reference P-ref of the active power controller, and (3) appropriate removal of Delta P-0 if the power frequency deviation is above a prescribed value and the automatic generation control (AGC) is activated. The obtained simulation results on a simple 2-bus system and on IEEE 14-bus test system show that the proposed approach has several advantages over existing approaches.
机译:最近几年,电力系统中可再生能源(尤其是风电场)的普及率不断提高。这些类型的电源存在频率控制问题,因为它们不提供所谓的惯性响应。由于配备有变速风力涡轮机(VSWT)的双馈感应发电机(DFIG)是风电场中使用最广泛的发电机类型,因此,本文提出了一种新的控制方法,使DFIG可以更有效地参与电力系统的频率控制。该方法包括三个步骤:(1)估计在DFIG扰动之后的第一刻出现的有功电功率和机械功率之间的有功功率失配Delta P-0,(2)基于Delta P-0确定有功功率控制器的电功率参考P-ref,以及(3)如果功率频率偏差高于规定值并且激活了自动发电控制(AGC),则应适当去除Delta P-0。在简单的2总线系统和IEEE 14总线测试系统上获得的仿真结果表明,与现有方法相比,该方法具有许多优势。

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