采用滑模控制的三相并网电压源变换器的各种拓扑直接功率控制

S. Huseinbegović, B. Perunicic, C. Milosavljevic, B. Veselić
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引用次数: 8

摘要

提出了一种利用空间矢量调制(SVM)实现可再生能源三相并网电压源变换器(VSC)直接功率控制(DPC)的新方法。所提出的DPC策略基于滑模控制(SMC),并在dq参考系中实现。根据输出功率误差的瞬时值,通过VSC切换状态的选择直接控制有功和无功功率。该策略可以在各种VSC拓扑中实现。此外,线性控制器和调制器是不必要的。该控制策略的目标是向电网注入最大的可用有功功率和可控的无功功率。在多级VSC (ML-VSC)仿真模型上对该策略进行了验证。最后给出了测试VSC拓扑的仿真结果和输出信号的谐波分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct Power Control for various topologies of three phase grid-connected Voltage Sources Converters using Sliding Mode Control
This paper presents a new approach to Direct Power Control (DPC) strategy using Space Vector Modulation (SVM) for the three-phase grid connected Voltage Source Converter (VSC) in the Renewable Energy Sources (RESs). The proposed DPC strategy is based on the Sliding Mode Control (SMC) and it is implemented in the dq reference frame. The active and reactive powers are directly controlled by VSC switching states selection based on the instantaneous value of the delivered power error. This strategy may be implemented to various VSC topologies. Moreover, linear controllers and modulators are not necessary. The aim of the control strategy is to inject maximal available active power and a controlled amount of reactive power into grid. The strategy is tested on a simulation model of a multilevel VSC (ML-VSC). Simulation results of the tested VSC topology and harmonic analysis of the output signals are presented at the end.
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