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A Space Vector Switching Strategy for Three-Level Five-Phase Inverter Drives

机译:三电平五相逆变器驱动器的空间矢量切换策略

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摘要

A novel space vector modulation (SVM) technique for a three-level five-phase inverter is described based on an optimized five vectors concept. The concept utilizes a novel vector minimization technique that reduces the number of vectors in the $d_{1}{-}q_{1}$ vector space by identifying candidate vectors in each of the ten sectors that comprise the decagon vector space. The candidate vectors are selected based on the inequality relationship between the five-phase voltages during each switching cycle. Using this technique, the original 243 inverter states are reduced to 113 candidate vectors, and from the remaining states ten possible switching sequences in each sector are utilized to develop the desired voltage reference in the $d_{1}{-}q_{1}$ vector space while forcing a null vector in the $d_{3}{-}q_{3}$ vector space. A novel region determination technique is also introduced to identify the subregion that the $d_{1}{-}q_{1}$ voltage vector occupies. This technique significantly reduces the computational overhead required when implementing SVM techniques with multilevel and multiphase inverters. The space vector technique can utilize redundant vectors to assist in balancing subcycle variation of the dc-link capacitor voltage under unbalanced load conditions. Experiments validate simulation results where the low-order voltage harmonics show that the $d_{3}{-}q_{3}$ voltage vector is null.
机译:基于优化的五矢量概念,介绍了一种用于三电平五相逆变器的新颖空间矢量调制(SVM)技术。该概念利用一种新颖的矢量最小化技术,该技术通过在组成十边形矢量空间的十个扇区中的每一个中识别候选矢量,从而减少了$ d_ {1} {-} q_ {1} $矢量空间中的矢量数量。基于每个开关周期期间五相电压之间的不等式关系来选择候选矢量。使用该技术,原始的243个逆变器状态被缩减为113个候选矢量,并且从其余状态中每个扇区中的十个可能的开关序列被用于在$ d_ {1} {-} q_ {1}中产生所需的电压基准。 $向量空间,同时在$ d_ {3} {-} q_ {3} $向量空间中强制使用空向量。还引入了一种新颖的区域确定技术来识别$ d_ {1} {-} q_ {1} $电压矢量所占据的子区域。使用多电平和多相逆变器实施SVM技术时,该技术可显着减少所需的计算开销。空间矢量技术可以利用冗余矢量来帮助平衡不平衡负载条件下直流母线电容器电压的子周期变化。实验验证了仿真结果,其中低阶电压谐波表明$ d_ {3} {-} q_ {3} $电压矢量为空。

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