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Control of three-phase electric springs used in microgrids under ideal and non-ideal conditions

机译:在理想和非理想条件下控制微电网中使用的三相电弹簧

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A control scheme is proposed for the three-phase electric springs (TPESs), based on the recently introduced δ control and an improved phase locked loop (PLL). The scheme utilizes three independent δ controls, one for each phase, to stabilize the voltages across the critical loads (CLs) while handing over imbalance and distortion of the microgrid voltages, in addition to their fluctuations, to the non-critical loads (NCLs). Instrumental in achieving this outcome is the operation of the improved PLL that separates the fundamental component of the positive sequence of the microgrid voltages from the other sequences and harmonics. The scheme is also able to stabilize the CL voltages under imbalance of CLs and NCLs. Simulation results obtained under various conditions of imbalance of the microgrid voltages and/ or the loads, and of distortion of the microgrid voltages, taken individually and together, show the effectiveness of the proposed control scheme of TPESs.
机译:基于最近引入的δ控制和改进的锁相环(PLL),提出了一种针对三相电弹簧(TPES)的控制方案。该方案利用三个独立的δ控制,每相一个,以稳定临界负载(CL)上的电压,同时将微电网电压的不平衡和失真(除了波动之外)移交给非临界负载(NCL)。 。有助于实现此结果的是改进的PLL的操作,该操作将微电网电压正序的基本成分与其他序列和谐波分开。该方案还能够在CL和NCL不平衡的情况下稳定CL电压。在微电网电压和/或负载的不平衡以及微电网电压的畸变的各种条件下获得的仿真结果,分别或一起进行,表明了所提出的TPES控制方案的有效性。

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