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Application of Mathematics in 3D Space Vector Pulse Width Modulation for 4-Leg Inverter to Generate Unbalanced AC

机译:数学在3D空间矢量脉冲宽度调制中的应用,为4腿变频器产生不平衡交流

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Three dimensional (3D) Space Vector Pulse Width Modulation (SVPWM) techniques depend on correct mapping of the reference signal vector within a predefined 3D space. The 3D space is defined with 3D switching state vectors for all valid switching states of the bridge circuit of a converter or inverter that has to be modulated. A four leg bridge circuit with two switches per leg has sixteen valid switching states. The space defined with corresponding vectors in α-β-γ frame is a hexagonal right cylinder. The hexagonal space is subdivided in twenty four tetrahedrons, each of which is bound by three concurrent vectors. This paper presents a mathematical model that determines the exact tetrahedron where the reference vector is located and identifies the relevant three switching state vectors. A Matlab simulation of a four leg voltage source inverter working on the proposed model has been presented as a benchmark program to validate the model. Results obtained demonstrate the tangible potential of the proposed approach.
机译:三维(3D)空间矢量脉冲宽度调制(SVPWM)技术取决于预定义的3D空间内的参考信号矢量的正确映射。 3D空间由3D开关状态向量定义,用于用于必须调制的转换器或逆变器的桥接电路的所有有效切换状态。每条腿两个开关的四个腿桥电路有16个有效的交换状态。具有α-β-γ框架中的相应矢量限定的空间是六边形右圆筒。六边形空间在二十四个四边体中细分,每个四边形都被三个并发向量束缚。本文呈现了一种数学模型,其确定所在的参考矢量的精确四面体并识别相关的三个切换状态向量。在验证模型的基准程序上呈现了在所提出的模型上工作的四个腿电压源逆变器的MATLAB仿真。获得的结果证明了所提出的方法的有形潜力。

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