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Instantaneous power analysis and control of three-phase grid-connected VSC under unbalanced grid faults

机译:电网不平衡故障下三相并网VSC的瞬时功率分析与控制

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Control of three-phase grid-connected voltage source converter under unbalanced grid faults greatly depends on the active and reactive powers processed by the converter. The instantaneous active power theory with sequence decomposition is employed to analyze the instantaneous power components, especially the second-order oscillation power. Study shows that the second-order oscillation power comprises two quadrature components, the cosine and sine terms, which are contributed by the average active power and the average reactive power, respectively. These findings shed insight on regulating the oscillation power under unbalanced grid conditions. Based on this observation, we propose a positive and negative sequence conductance and susceptance control scheme, which enables simple regulation of the active power or reactive power oscillation with the average active power and reactive power control. In addition, we investigate the relationship between the positiveegative sequence conductance and susceptance distribution factors with power oscillation and peak current. A maximum current limitation scheme is embedded into the current reference generation block for over-current protection. Prototype measurements verify the accuracy of the analysis and the effectiveness of the control scheme.
机译:在不平衡电网故障下对三相并网电压源变流器的控制在很大程度上取决于变流器处理的有功功率和无功功率。采用带序列分解的瞬时有功功率理论分析瞬时功率分量,特别是二阶振荡功率。研究表明,二阶振荡功率包括两个正交分量,即余弦和正弦项,分别由平均有功功率和平均无功功率贡献。这些发现为调节不平衡电网条件下的振荡功率提供了见识。基于此观察结果,我们提出了一种正序和负序电导和电纳控制方案,该方案可通过平均有功功率和无功功率控制来简单地调节有功功率或无功振荡。此外,我们研究了正负序电导和电纳分布系数与功率振荡和峰值电流之间的关系。最大电流限制方案嵌入到电流基准产生模块中,以进行过电流保护。原型测量验证了分析的准确性和控制方案的有效性。

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