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Design of Full-Order State Observer for Motor Drive Systems Based on the Fixed Gain Filter

机译:基于固定增益滤波器的电机驱动系统全阶状态观测器设计

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This paper mainly discusses about the full-order state observation technology for the permanent magnet synchronous motor (PMSM) drive system. First, the concept of the Kalman filter (KF) is synthesized to design a novel fixed gain filter (FGF) with an optimal fixed feedback gain matrix, which ensures a fast and accurate observation for position, speed, acceleration, and load torque. To alleviate the heavy computational load of the KF, second, the feedback gain is configured as a single tunable parameter only, which can be calculated offline. The regulation parameter is refined within a certain small range by fulfilling the system stability criterion. Furthermore, the system dynamic performance indexes, such as noise smoothing capability and bandwidth, are both analyzed to deduce the expected exact value of the regulation parameter. The proposed FGF can provide an accurate observation equivalent to the conventional KF, while the proposed FGF provides a faster tracking performance, an easier parameter tuning mechanism, and a lower program complexity. The performance of the FGF is verified by simulations and experiments in all cases.
机译:本文主要讨论了永磁同步电动机(PMSM)驱动系统的全阶态观测技术。首先,合成卡尔曼滤波器(KF)的概念以设计具有最佳固定反馈增益矩阵的新型固定增益滤波器(FGF),这确保了对位置,速度,加速度和负载扭矩的快速准确观察。为了减轻KF的重型计算负载,第二,反馈增益仅配置为单个可调参数,其可以从线计算。通过满足系统稳定标准,调节参数在一定小范围内精制。此外,分析了系统动态性能索引,例如噪声平滑能力和带宽,以推导调节参数的预期确切值。所提出的FGF可以提供相当于传统KF的准确观察,而所提出的FGF提供了更快的跟踪性能,更容易参数调整机制和更低的程序复杂性。在所有情况下,通过模拟和实验验证FGF的性能。

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