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首页> 外文期刊>ETEP-European Transactions on Electrical Power >Low switching frequency modulation of a 3 × 3 matrix converter in UPFC application using differential evolution method
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Low switching frequency modulation of a 3 × 3 matrix converter in UPFC application using differential evolution method

机译:3×3矩阵转换器的低开关频率调制在UPFC应用中使用差分演进方法

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摘要

SummaryThis paper presents a low switching frequency–based pulse width modulation technique for a 3 × 3 indirect matrix converter. The nontriplen lower‐order harmonics are considered for minimization using differential evolution–based metaheuristic technique. The mathematical equations are formulated while considering minimization of nontriplet lower‐order harmonics along with control of fundamental voltage. An objective function is constructed by considering all the constraints on the feasible region and then it is minimized by using differential evolution technique. It is observed that the solution in the entire modulation range exists along with multiple solutions. Various cases of switching angles are considered, and solution trajectories are reported in practically feasible range. This type of modulation and control scheme is extremely useful in high power applications such as unified power flow controller as it minimizes the switching losses in the converter. The theoretical findings are verified by simulation and hardware results.
机译:Siground本文提出了一种用于3×3间接矩阵转换器的低开关频率基脉冲宽度调制技术。使用基于差分演化的成分型技术,考虑了非升级的低阶谐波。在考虑最小化非填充下级谐波的同时配制数学方程,以及控制基本电压。通过考虑可行区域上的所有约束来构建目标函数,然后通过使用差分演进技术最小化。观察到,整个调制范围内的解决方案与多种解决方案一起存在。考虑各种切换角的案例,并且在实际上可行的范围内报告了解决方案轨迹。这种类型的调制和控制方案在诸如统一电力流量控制器的高功率应用中非常有用,因为它最大限度地减少了转换器中的开关损耗。通过模拟和硬件结果验证理论发现。

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