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Lyapunov Function-Based Current Controller to Control Active and Reactive Power Flow From a Renewable Energy Source to a Generalized Three-Phase Microgrid System

机译:基于李雅普诺夫函数的电流控制器,控制从可再生能源到广义三相微电网系统的有功和无功潮流

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摘要

In this paper, a novel current control technique, implemented in the a–b–c frame, for a three-phase inverter is proposed to control the active and reactive power flow from the renewable energy source to a three-phase generalized microgrid system. The proposed control system not only controls the grid power flow but also reduces the grid current total harmonic distortion in the presence of typical nonlinear loads. The control system shapes the grid current taking into account the grid voltage unbalance, harmonics as well as unbalance in line side inductors. The stability of the control system is ensured by the direct method of Lyapunov. A SRC is also proposed to improve the performance of the current controller by estimating the periodic disturbances of the system. The proposed control system (implemented digitally) provides superior performance over the conventional multiple proportional-integral and proportional-resonant control methods due to the absence of the PARK's transformation blocks as well as phase lock loop requirement in the control structure. A new inverter modeling technique is also presented to take care of unbalances both in grid voltages and line side inductors. Experimental results are provided to show the efficacy of the proposed control system.
机译:在本文中,提出了一种在a–b–c框架中实现的用于三相逆变器的新颖电流控制技术,以控制从可再生能源到三相广义微电网系统的有功和无功功率流。所提出的控制系统不仅控制电网潮流,而且在存在典型非线性负载的情况下降低了电网电流总谐波失真。控制系统考虑电网电压不平衡,谐波以及线路侧电感器的不平衡来调整电网电流。 Lyapunov的直接方法可确保控制系统的稳定性。还提出了SRC,以通过估计系统的周期性干扰来改善电流控制器的性能。所提出的控制系统(以数字方式实现)比常规的多个比例积分和比例谐振控制方法具有更好的性能,这是因为在控制结构中不存在PARK变换块以及锁相环的要求。还提出了一种新的逆变器建模技术,以解决电网电压和线路侧电感器中的不平衡问题。实验结果表明该控制系统的有效性。

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