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Improvement on Stability and Islanding Detection Performances by Advanced Inverter Control of DG

机译:通过DG的先进变频器控制改善稳定性和孤岛检测性能。

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The islanding detection is one of the most important issues for grid-connection of the distributed generation (DG) systems. Several recent researches have developed two types of islanding detection methods (IDMs) with high-performance. One is the power and voltage (P-V) characteristic of load based IDM, and the other is the inverter's switching frequency based IDM. Although the above IDMs have no non-detection zone (NDZ) theoretically, their usefulness mainly depends on the control performance of the inverter in practice. In other words, the inverter must achieve the decoupled real and reactive control and successful operation of phase-locked loop (PLL). To deal with these problems, this paper describes the design of inverter controller to improve both system stability and islanding detection performance with the NDZ. The proposed controller uses the magnitude and phase of measured voltage directly instead of using the direct and quadrature axes voltages and currents. Additionally, it does not need an instant phase of point of common coupling (PCC) voltage, which is required in the conventional controller, and therefore makes it possible for the PLL independent control. Several case studies are carried out to verify that the proposed controller has better performance than the conventional controller.
机译:孤岛检测是分布式发电(DG)系统并网的最重要问题之一。最近的一些研究已经开发出两种类型的具有高性能的孤岛检测方法(IDM)。一个是基于负载的IDM的功率和电压(P-V)特性,另一个是基于逆变器的开关频率的IDM。尽管上述IDM在理论上没有非检测区(NDZ),但其实用性主要取决于实际中逆变器的控制性能。换句话说,逆变器必须实现去耦的有功和无功控制以及锁相环(PLL)的成功运行。为了解决这些问题,本文描述了逆变器控制器的设计,以提高NDZ的系统稳定性和孤岛检测性能。所提出的控制器直接使用被测电压的幅度和相位,而不是使用直流和正交轴的电压和电流。另外,它不需要常规控制器中所需的公共耦合点(PCC)电压的瞬时相位,因此可以独立于PLL进行控制。进行了几个案例研究,以验证所提出的控制器具有比常规控制器更好的性能。

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