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Overview of Model Predictive Control of Converters for Islanded AC Microgrids

机译:岛屿交流微电网转换器模型预测控制概述

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This paper presents an overview of the recent advances in the application of model predictive control (MPC) to the control of the primary and secondary tiers of islanded AC microgrids (MGs). At the primary level of an islanded AC MG, MPC offers the advantages of faster dynamics, maximum utility of bandwidth and more stable inverter DC-link voltage. The superior dynamic features of MPC also enhance MG secondary control as well. The study shows that MPC has found effective applications in voltage source converters for power sharing, power quality regulation as well as frequency, voltage and current control in centralized, decentralized and distributed MG topologies. The challenges and future trends of MPC’s relevance to the MGs for the future smart grid are also discussed. We have presented real-time hardware-in-the-loop test results of the MPC-based control of AC inverters in an islanded AC microgrid.
机译:本文概述了模型预测控制(MPC)在控制岛立的AC微电网(MGS)的初级和二级层的控制中的最新进展概述。在岛立AC MG的主要级别,MPC提供了更快的动态,带宽的最大效用和更稳定的逆变器DC-LING电压的优点。 MPC的卓越动态特征也增强了MG二次控制。该研究表明,MPC在电压源转换器中找到了有效应用,用于电力共享,电力质量调节以及集中,分散和分布式MG拓扑中的频率,电压和电流控制。也讨论了MPC与未来智能电网的MGS的相关趋势。我们在岛立的AC微电网中呈现了基于MPC的AC逆变器控制的实时硬件循环测试结果。

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