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Optimal Control of a Compact Converter in an AC Microgrid

机译:交流微电网中紧凑型变频器的最优控制

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This paper presents an optimal control method for a compact reduced switch count AC/AC converter in an AC microgrid. The AC/AC converter is adopted to interconnect dual three-phase renewable energy sources (RESs) and a three-phase permanent magnet synchronous motor (PMSM) to the grid to form an example of a mixed grid-feeding-drive system. For the adopted converter, a generalized pulse width modulation (PWM) scheme employing the third harmonic injection and a control method are proposed. Moreover, to achieve reduced dc link voltage ripple, good reference tracking and disturbance rejection, the gains of the controllers are optimized by minimizing a weighted sum of different objective functions. Each objective function represents a specific aspect to be minimized and the optimization problem is solved employing particle swarm optimization (PSO) method, while ensuring that the total harmonic distortion (THD) of the current at the points of common coupling (PCC) are less than 5%. For this mixed grid-feeding-drive system, simulation results under fast transient are provided to demonstrate the applicability of the adopted converter in the AC microgrid, the effectiveness of the proposed PWM, and the proposed optimal control method.
机译:本文为交流微电网中的紧凑型减少开关数的AC / AC转换器提出了一种最佳控制方法。 AC / AC转换器用于将双三相可再生能源(RESs)和三相永磁同步电动机(PMSM)互连到电网,以构成混合电网馈电驱动系统的示例。对于所采用的转换器,提出了一种采用三次谐波注入的广义脉宽调制(PWM)方案及其控制方法。此外,为了实现减小的直流链路电压纹波,良好的参考跟踪和抗扰度,通过最小化不同目标函数的加权和来优化控制器的增益。每个目标函数都代表一个要最小化的特定方面,并采用粒子群优化(PSO)方法解决优化问题,同时确保电流在公共耦合点(PCC)处的总谐波失真(THD)小于5%。对于该混合电网馈电驱动系统,提供了快速瞬态下的仿真结果,以证明所采用的转换器在交流微电网中的适用性,所提出的PWM的有效性以及所提出的最优控制方法。

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