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Improved Decoupled Control and Islanding Detection of Inverter-Based Distribution in Multibus Microgrid Systems

机译:多总线微电网系统中基于逆变器的配电的改进解耦控制和孤岛检测

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摘要

This work mainly discusses an accurate and fast islanding detection based on fractional wavelet packet transform (FRWPT) for multibus microgrid systems. The proposed protection scheme uses combined desirable features retrieved from discrete fractional Fourier transform (FRFT) and wavelet packet transform (WPT) techniques, which provides precise time-frequency information on minute perturbation signals introduced in the system. Moreover, this study focuses on the design of decoupling control with a distributed controller based on state feedback for the efficient operation of microgrid systems that are transitioning from the grid-connected mode to the islanded mode. An IEEE 9-bus test system with inverter based distributed generation (DG) units is considered for islanding assessment and smooth operation. Finally, tracking errors are greatly reduced with stability improvement based on the proposed controller. FRWPT based islanding detection is demonstrated via a time domain simulation of the system. Simulated results show an improvement in system stability with the application of the proposed controller and accurate islanding detection based on the FRWPT technique in comparison with the results obtained by applying the wavelet transform (WT) and WPT.
机译:这项工作主要讨论了基于分数小波包变换(FRWPT)的多总线微电网系统的准确,快速的孤岛检测。所提出的保护方案使用了从离散分数阶傅里叶变换(FRFT)和小波包变换(WPT)技术检索到的组合所需特征,该特征可提供有关系统中引入的微小扰动信号的精确时频信息。此外,本研究集中在基于状态反馈的分布式控制器的解耦控制设计上,以实现微电网系统的高效运行,这些系统正在从并网模式过渡到孤岛模式。考虑到具有孤岛评估和平稳运行的IEEE 9总线测试系统以及基于逆变器的分布式发电(DG)单元。最后,基于所提出的控制器,跟踪误差大大降低了,同时提高了稳定性。通过系统的时域仿真演示了基于FRWPT的孤岛检测。仿真结果表明,与应用小波变换(WT)和WPT所获得的结果相比,使用所建议的控制器和基于FRWPT技术的精确孤岛检测可以改善系统稳定性。

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