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Operation and control of hybrid microgrid with angle droop controller

机译:带角度下垂控制器的混合微电网的运行与控制

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摘要

This paper compares the performance of two droop control schemes in a hybrid microgrid. With presence of both converter interfaced and inertial sources, the droop controller share power in a decentralized fashion. Both the droop controllers facilitate reactive power sharing based on voltage droop. However in frequency droop control, the real power sharing depends on the frequency, while in angle droop control, it depends on output voltage angle. For converter interfaced sources this reference voltage is tracked while for inertial DG, reference power for the prime mover is calculated from the reference angle udwith the proposed angle control scheme. This coordinated control scheme shows significant improvement in system performance. The comparison with the conventional frequency droop shows that the angle control scheme shares power with much lower frequency deviation. This is a significant improvement particularly in a frequent load changing scenario.
机译:本文比较了混合微电网中两种下垂控制方案的性能。由于存在转换器接口和惯性源,下垂控制器以分散方式共享功率。两个下降控制器都基于电压下降促进无功功率共享。但是,在频率下降控制中,有效功率分配取决于频率,而在角度下降控制中,有效功率分配取决于输出电压角度。对于转换器接口的源,该参考电压被跟踪,而对于惯性DG,则通过所提出的角度控制方案,根据参考角 ud计算原动机的参考功率。这种协调的控制方案显示了系统性能的显着提高。与常规频率下降的比较表明,角度控制方案以较低的频率偏差共享功率。这是一项重大的改进,尤其是在频繁更改负载的情况下。

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