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A multi axis space phasor based current hysteresis controller for PWM inverters

机译:基于多轴空间相量的PWM逆变器电流滞环控制器

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In conventional three-phase current hysteresis controllers, the current error along the three phase axes are independently controlled. This will result in random selection of switching vectors causing high inverter switching losses. In this paper, a space phasor based multi axis current hysteresis controller is proposed, in which the current error along the orthogonal axes (jA, jB, jC) are monitored. The current error boundary is a hexagon. The proposed control scheme can be implemented using simple look up tables. The advantages of the proposed current hysteresis controlled PWM scheme, when compared to other multi level current hysteresis controllers, is that only the adjacent vectors close to the motor back EMF space phasor voltage, is only used for the inverter switching, for the entire speed range (optimum PWM switching). In the present scheme, the selection of the inverter voltage vectors for optimum PWM switching is achieved without any computation of the machine voltage space phasor, for the full speed range of the drive system. The proposed scheme is self-adapting, as far as the motor space phasor voltage is concerned, and also maintains the controller simplicity and quick response features of a hysteresis current controller. The scheme is simulated and also experimentally verified.
机译:在常规的三相电流迟滞控制器中,沿着三相轴的电流误差是独立控制的。这将导致开关矢量的随机选择,从而导致较高的逆变器开关损耗。在本文中,提出了一种基于空间相量的多轴电流磁滞控制器,其中监测了沿正交轴(jA,jB,jC)的电流误差。当前的误差边界是一个六边形。可以使用简单的查询表来实现所提出的控制方案。与其他多级电流磁滞控制器相比,提出的电流磁滞控制PWM方案的优势在于,在整个速度范围内,仅接近电动机反电动势空间相量电压的相邻矢量仅用于逆变器开关(最佳PWM切换)。在本方案中,在驱动系统的整个速度范围内,无需对机器电压空间相量进行任何计算即可实现用于最佳PWM开关的逆变器电压矢量的选择。就电机空间相量电压而言,所提出的方案是自适应的,并且还保持了控制器的简单性和磁滞电流控制器的快速响应特性。该方案经过了仿真和实验验证。

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