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Unified Wide-Speed Sensorless Scheme Using Nonlinear Optimization for IPMSM Drives

机译:针对IPMSM驱动器使用非线性优化的统一高速无传感器方案

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This paper proposes a novel unified nonlinear optimization-based speed and position estimation algorithm for interior permanent magnet synchronous motor drives at wide speed range operations. A cost function based on the voltage equations in the stationary reference frame is employed for speed and position estimation. The speed and position can be estimated by minimizing the cost function. At low speed, including the standstill condition, the cost function is modified and high-frequency sinusoidal voltage signals are injected in the estimated magnetic axis. A phase locked loop is combined with the proposed position estimator for reducing the noise of estimation results. Compared with existing sensorless methods, a unified estimator is used at low- and high-speed operations and a better performance is obtained in transient and steady-state conditions. The convexity of the cost functions with respect to the speed and position estimation errors is analyzed in the paper. The feasibility of the proposed estimation algorithm is validated with an experimental test bench.
机译:本文提出了一种新颖的基于非线性统一优化的新型算法,用于在宽速度范围内运行的内部永磁同步电动机驱动器的速度和位置估计。基于静止参考系中电压方程的成本函数用于速度和位置估计。速度和位置可以通过最小化成本函数来估算。在低速(包括静止状态)下,修改成本函数并将高频正弦电压信号注入估算的磁轴中。锁相环与提出的位置估计器相结合,以减少估计结果的噪声。与现有的无传感器方法相比,低速和高速操作使用统一的估计器,并且在瞬态和稳态条件下可获得更好的性能。本文分析了成本函数对速度和位置估计误差的凸性。提出的估计算法的可行性已通过实验测试台进行了验证。

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