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Performance Evaluation of Model Predictive Control for Neutral-Point-Clamped Voltage Source Converter with LCL Filter

机译:具有LCL滤波器的中性点钳位电压源转换器模型预测控制的性能评估

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The large-scale integration of distributed power generation plants based on Renewable Energy Sources (RES) increases the overall system complexity and poses a growing challenge for maintaining a stable and reliable electricity supply. In particular, solar and wind energy systems come along with high intermittency, are subjected to stochastic fluctuations and thus increase system uncertainties. Since power converters are the key system component to interface RES-based plants to the power grid, they will play a significant role in operating future power grids. Even nowadays they are already required to provide ancillary system services. Contrary, the high penetration of grid-interfaced power converters comes along with increased power quality issues. Thus, appropriate and advanced control techniques are required to meet the growing demands on future power converter operation. Technological advances allow the implementation of highly sophisticated and complex control techniques. Among them, the Model-based Predictive Control (MPC) approach proves to be a powerful and promising methodology. This work deals with MPC for grid-connected through Neutral-Point-Clamped (NPC) Voltage Source Converters (VSC) with LCL filter. The chosen MPC approach is experimentally validated on a VSC test bench.
机译:基于可再生能源(RES)的分布式发电厂的大规模集成增加了整个系统的复杂性,并且对保持稳定可靠的电力供应提出了越来越大的挑战。特别是,太阳能和风能系统具有高度的间歇性,会受到随机波动的影响,因此会增加系统的不确定性。由于功率转换器是将基于RES的工厂连接到电网的关键系统组件,因此它们将在未来的电网运行中发挥重要作用。即使在今天,它们也已经被要求提供辅助系统服务。相反,电网接口功率转换器的高普及率伴随着越来越多的电能质量问题。因此,需要适当和先进的控制技术来满足对未来功率转换器操作的不断增长的需求。技术的进步允许实施高度复杂的控制技术。其中,基于模型的预测控制(MPC)方法被证明是一种强大而有前途的方法。这项工作涉及通过带有LCL滤波器的中性点钳位(NPC)电压源转换器(VSC)进行电网连接的MPC。所选的MPC方法在VSC测试台上进行了实验验证。

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