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Synchronised bus-clamping PWM strategies based on space vector approach for modulation up to six-step mode

机译:基于空间矢量方法的同步总线钳位PWM策略,可调制至六步模式

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Synchronised PWM waveforms with 3-phase, half-wave and quarter-wave symmetries are required in VSI-fed, high-power AC drives. The flexibilities of the space vector approach to modulation can be utilised for real-time generation of more than one family of synchronised PWM waveforms, maintaining all the symmetries, with any odd pulse number. Two such synchronised PWM strategies are proposed in this paper along with an overmodulation scheme for operation up to six-step mode, maintaining the modulator gain constant in the whole range. The proposed overmodulation scheme does not require any evaluation of quadratic or cubic expressions, or any look-up table except for storing sine values. These two strategies result in a harmonic distortion better than those of comparable ones at higher modulation indices for low pulse numbers of 5 and 7 A combination of these two strategies, along with two other bus-clamping strategies and the conventional space vector strategy, leads to a significant reduction in the harmonic currents in constant V/f induction motor drives as shown by the theoretical as well as experimental results.
机译:在VSI供电的大功率交流变频器中,需要具有3相,半波和四分之一波对称性的同步PWM波形。空间矢量调制方式的灵活性可用于实时生成多个系列的同步PWM波形,并以任何奇数脉冲数保持所有对称性。本文提出了两种这样的同步PWM策略,以及一种用于高达六步模式工作的过调制方案,可在整个范围内保持调制器增益恒定。所提出的过调制方案除了存储正弦值外,不需要对二次或三次表达式进行任何评估,也不需要任何查找表。在较高的调制指数下,对于5和7的低脉冲数,这两种策略所产生的谐波失真要比同类方法更好。这两种策略的结合以及其他两种总线钳位策略和传统的空间矢量策略导致了理论和实验结果表明,恒定V / f感应电动机驱动器中的谐波电流显着降低。

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