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Voltage Stabilization in MVDC Microgrids Using Passivity-Based Nonlinear Control

机译:基于无源非线性控制的MVDC微电网中的电压稳定

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This paper investigates the application of passivity-based nonlinear control to the problem of primary voltage stabilization in medium-voltage DC microgrids (MVDC mGs) given by the interconnection of nonlinear distributed generation units (DGUs) and power lines. To this aim, we propose nonlinear local regulators which steer the voltage at the output terminal of each DGU to a reference value. Each controller can be explicitly synthesized relying on DGU parameters, voltage reference values of the neighboring DGUs and resistance of the neighboring power lines. The control design enables plug-and-play (PnP) operations: a plug-in or -out of a DGU requires only the update of regulators of neighboring DGUs without spoiling the stability of overall mG. Theoretical results are backed up by simulations in Simulink environment.
机译:本文研究了基于无源性的非线性控制在非线性分布式发电单元(DGU)和电力线的互连给定的中压DC微电网(MVDC mGs)的一次电压稳定问题中的应用。为此,我们提出了非线性局部调节器,该调节器可将每个DGU输出端子上的电压控制到参考值。可以依赖于DGU参数,相邻DGU的参考电压值和相邻电源线的电阻来明确合成每个控制器。该控制设计支持即插即用(PnP)操作:DGU的插入或拔出仅需要更新相邻DGU的调节器,而不会破坏总体mG的稳定性。理论结果由Simulink环境中的仿真支持。

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