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Control Method for Calculating Optimum DC Bus Voltage to Improve Drive System Efficiency in Variable DC Bus Drive Systems

机译:计算最优直流母线电压的控制方法,提高可变直流总线驱动系统中的驱动系统效率

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In this paper, an online method to calculate the optimum DC bus voltage in variable DC bus voltage drive system is proposed. The required DC bus voltage in the low speed region is much lower than for the rated speed region. As a result, the machine drive system efficiency can be improved with lower DC bus voltage since the switching losses in the inverter are reduced. To achieve both desired machine output torque and minimized losses simultaneously, an optimum DC bus voltage is required. However, machine parameter estimation errors and spatial harmonics in the machine result in calculation errors for the required DC bus voltage. A voltage disturbance state filter (VDSF), which is formed by a Luenburger-style closed-loop stator current vector observer with voltage command feedforward, is used to mitigate the calculation errors. Voltage errors caused by the parameter deviations and machine spatial harmonics will inherently be estimated by the observer’s state feedback controller. Therefore, calculation voltage error can be corrected by the VDSF’s disturbance voltage, so that the optimum DC bus voltage can be obtained.
机译:本文提出了一种在线方法,用于计算可变直流母线电压驱动系统中的最佳直流母线电压。低速区域中所需的直流母线电压远低于额定速度区域的低得多。结果,由于逆变器中的开关损耗减小,因此可以通过较低的直流母线电压提高机器驱动系统效率。为了同时实现两个所需的机器输出扭矩和最小化损耗,需要最佳的直流母线电压。但是,机器中的机器参数估计误差和空间谐波导致所需直流母线电压的计算误差。使用电压指挥前馈由Luenburger型闭环定子电流矢量观测器形成的电压干扰状态滤波器(VDSF)用于减轻计算误差。观察者的状态反馈控制器将估算由参数偏差和机器空间谐波引起的电压误差。因此,可以通过VDSF的扰动电压校正计算电压误差,从而可以获得最佳直流母线电压。

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