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Plug-and-Play Nonlinear Droop Construction Scheme to Optimize Islanded Microgrid Operations

机译:即插即用的非线性下垂构造方案可优化孤岛微电网运行

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摘要

The operating cost of islanded microgrids (μGs) can be minimized by performing an optimal power sharing among the distributed generators (DGs). In this study, a plug-and-play optimization scheme (PPOS) for developing nonlinear droop relations is proposed to achieve an optimal power sharing among DGs in islanded μGs. The PPOS constructs optimal nonlinear relations for each DG, which are used as nonlinear droop curves that adjusts the output power of the DGs subsequent to any load variation to minimize the μG operating cost effectively. The construction of nonlinear droop relations in the PPOS is performed individually for each DG by optimizing each one against hypothetical DGs. This approach provides an indirect optimization among different DGs in the μG network and ensures an operating cost minimization irrespective of the μG topology. An islanded μG topology has been developed and simulated in MATLAB/Simulink environment to verify the effectiveness of the proposed method and the performance of the nonlinear droop control. An experimental study has also been conducted on a μG test bed to prove the effectiveness of the nonlinear power sharing and to verify the performance of the nonlinear droop control in the μG operating cost minimization.
机译:通过在分布式发电机(DG)之间执行最佳功率共享,可以使孤岛微电网(μGs)的运行成本最小化。在这项研究中,提出了一种用于开发非线性下垂关系的即插即用优化方案(PPOS),以实现孤岛μG中DG之间的最佳功率共享。 PPOS为每个DG构造了最佳的非线性关系,这些关系用作非线性下降曲线,可在任何负载变化后调整DG的输出功率,以有效地降低μG的运行成本。通过针对假设的DG优化每个DG,可以分别为每个DG执行PPOS中非线性下垂关系的构造。这种方法在μG网络中的不同DG之间提供了间接优化,并确保了与μG拓扑结构无关的运营成本最小化。已经开发了孤岛μG拓扑并在MATLAB / Simulink环境中进行了仿真,以验证所提出方法的有效性以及非线性下降控制的性能。还已经在μG测试床上进行了实验研究,以证明非线性功率共享的有效性,并验证了在将μG运营成本降至最低的情况下,非线性下降控制的性能。

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