Model Predictive Control of MMC-based Medium Voltage Microgrid for Grid Connected and Islanded Operation

Ankita Sharma, Rajashekarareddy Chilipi, K. Kumar
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Abstract

This study presents a model predictive control (MPC) of modular multilevel converter (MMC)-based microgrid for grid connected mode (GCM) and islanded mode (ISM) operations with seamless transition capabilities. Submodule (SM) capacitor voltage control of the MMC is the major challenge in improving the efficiency and reliability of the MMC system. Therefore, a model predictive current control (MPCC) scheme is developed to balance the SMs' capacitor voltage and supply the power generated by the renewable energy sources to load and the utility grid. In the ISM, model predictive voltage control (MPVC) is developed to achieve constant voltage across the load terminals and control the SMs' capacitor voltage. The developed MPC techniques estimate the future behavior of control variables and uses a cost function to produce optimal switching sequence for the MMC. Thus, in comparison to the classical d-q frame control, the developed MPC techniques avoid the use of pulse width modulation schemes, proportional integral controllers and rigorous tuning efforts. Moreover, for seamless transition between ISM to GCM and vice-versa, a phase-locked loop (PLL)-based seamless transition sequence is devised. The performances of the MPCC and MPVC are validated against the conventional d-q control via simulation results under different operating conditions.
基于mmc的中压微电网并网孤岛运行模型预测控制
针对并网模式(GCM)和孤岛模式(ISM)的无缝过渡能力,提出了基于模块化多电平变换器(MMC)的微电网模型预测控制(MPC)。子模块(SM)电容电压控制是提高MMC系统效率和可靠性的主要挑战。为此,提出了一种模型预测电流控制(MPCC)方案,以平衡SMs电容器电压,并将可再生能源发电提供给负荷和公用电网。在ISM中,开发了模型预测电压控制(MPVC),以实现负载端电压恒定并控制SMs电容器电压。开发的MPC技术估计控制变量的未来行为,并使用成本函数为MMC产生最优切换序列。因此,与经典的d-q帧控制相比,开发的MPC技术避免了脉宽调制方案、比例积分控制器和严格的调谐工作的使用。此外,为了实现ISM和GCM之间的无缝过渡,设计了一种基于锁相环(PLL)的无缝过渡序列。通过不同工况下的仿真结果,验证了MPCC和MPVC在常规d-q控制下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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