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Frequency Control of DFIG-Based Wind Power Penetrated Power Systems Using Switching Angle Controller and AGC

机译:使用开关角控制器和AGC的基于DFIG的风力发电系统的频率控制

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This paper proposes a switching angle controller (SAC) and an automatic generation controller (AGC) for the doubly-fed induction generator (DFIG) to control the frequency of DFIG-based wind power penetrated power systems. The concept of virtual rotor angle of the DFIG is defined. The virtual rotor angle is controlled by the SAC in a bang-bang manner such that the active power of the DFIG is regulated to provide frequency support to the external power grids. The output of the SAC is also used for the control of pitch angle to offer a short-term regulation of the mechanical power input to the DFIG, and the long-term control of the mechanical power input is achieved with the AGC. Small-signal analysis is undertaken to verify the effectiveness of the SAC and the AGC. Simulation studies are carried out in a two-machine power system and a modified Kundur four-machine two-area power system, respectively. The frequency support performance of DFIGs having different control configurations is investigated. Modal analysis is undertaken to evaluate the effect of the SAC and the AGC in providing additional damping to the rotor oscillation modes of the modified Kundur four-machine two-area power system.
机译:本文提出了一种双馈感应发电机(DFIG)的开关角控制器(SAC)和自动发电控制器(AGC),以控制基于DFIG的风力发电系统的频率。定义了DFIG的虚拟转子角的概念。虚拟转子角度由SAC反复控制,以使DFIG的有功功率得到调节,从而为外部电网提供频率支持。 SAC的输出还用于控制俯仰角,以提供对DFIG的机械动力输入的短期调节,而通过AGC可以实现对机械动力输入的长期控制。进行小信号分析以验证SAC和AGC的有效性。仿真研究分别在两机动力系统和改进的Kundur四机两区动力系统中进行。研究了具有不同控制配置的DFIG的频率支持性能。进行模态分析,以评估SAC和AGC在为改进的Kundur四机两区电力系统的转子振动模式提供额外阻尼方面的作用。

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