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Direct Lyapunov Control Technique for the Stable Operation of Multilevel Converter-Based Distributed Generation in Power Grid

机译:直接Lyapunov控制技术在电网中基于多级变流器的分布式发电的稳定运行中

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摘要

This paper deals with a control strategy of multilevel converter topologies for integration of distributed generation (DG) resources into the power grid. The proposed control plan is based on the direct Lyapunov control (DLC) technique, which is an appropriate tool for the analysis and definition of a stable operating condition for DG link in the power grid. The compensation of instantaneous variations in the reference current components in ac side and dc voltage variations of cascaded capacitors in dc side of the interfacing system is considered properly, which is the main contribution and novelty of this paper in comparison with other control methods. By utilization of the proposed control technique, DG can provide continuous injection of active power in fundamental frequency from the dispersed energy sources to the grid. In addition, reactive power and harmonic current components of nonlinear loads can be provided with fast dynamic response, by setting a multiobjective reference current component in the current loop of DLC-based model. Therefore, achieving sinusoidal grid currents in phase with load voltages are possible, while the required power from the load side is more than the maximum capacity of interfaced multilevel converter. Simulation results confirm the effectiveness of the proposed control strategy in DG technology during dynamic and steady-state operating conditions.
机译:本文讨论了一种用于将分布式发电(DG)资源集成到电网中的多级转换器拓扑的控制策略。拟议的控制计划基于直接Lyapunov控制(DLC)技术,这是用于分析和定义电网中DG链路稳定运行条件的合适工具。适当考虑了接口系统的交流侧参考电流分量的瞬时变化和接口系统的直流侧级联电容器的直流电压变化的补偿,这是本文与其他控制方法相比的主要贡献和新颖之处。通过利用所提出的控制技术,DG可以提供从分散能源到电网的基频连续有功功率注入。此外,通过在基于DLC的模型的电流回路中设置多目标参考电流分量,可以为非线性负载的无功功率和谐波电流分量提供快速的动态响应。因此,可以实现与负载电压同相的正弦波电网电流,而来自负载侧的所需功率大于接口多电平转换器的最大容量。仿真结果证实了DG技术在动态和稳态运行条件下所提出的控制策略的有效性。

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