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PMSM Drive System Efficiency Optimization Using a Modified Gradient Descent Algorithm With Discretized Search Space

机译:PMSM驱动系统效率优化使用具有离散搜索空间的修改梯度下降算法

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This article investigates efficiency optimization in a permanent magnet synchronous machine (PMSM) drive system, including the motor and the power converter. At first, the motor drive efficiency model based on the input and output power is proposed. In this model, the input power is calculated from the dc-link voltage and current measurements, and the output power is modeled and computed from the dq-axis voltages and currents considering temperature rise, magnetic saturation, cross-coupling effect, and inverter nonlinearity. The proposed efficiency model includes both the inverter and motor losses without the need of loss models, so it simplifies the efficiency calculation significantly. Based on this efficiency model, a novel gradient descent algorithm-based approach with a discrete search space and proper constraints is proposed to optimize the PMSM drive system efficiency, ensure a fast searching speed, and reduce the influence from measurement uncertainties. Compared with the existing approaches, the proposed approach is computationally efficient, does not require loss models, and is noninvasive as no signal injection is involved. The proposed approach is evaluated on a laboratory PMSM drive system with extensive experimental tests.
机译:本文调查永磁同步机(PMSM)驱动系统中的效率优化,包括电机和电源转换器。首先,提出了基于输入和输出功率的电机驱动效率模型。在该模型中,从DC链路电压和电流测量计算输入功率,并且通过考虑温度上升,磁饱和,交叉耦合效果和逆变器非线性,从DQ轴电压和电流建模和计算输出功率。所提出的效率模型包括逆变器和电机损耗,无需损耗模型,因此它显着简化了效率计算。基于该效率模型,提出了一种具有离散搜索空间和适当约束的基于新的基于梯度下降算法的方法来优化PMSM驱动系统效率,确保快速搜索速度,并减少测量不确定性的影响。与现有方法相比,所提出的方法是计算效率,不需要损失模型,并且不涉及信号注射。在具有广泛的实验测试的实验室PMSM驱动系统上评估所提出的方法。

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