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Design and implementation of an adaptive controller for torque ripple minimization in PM synchronous motors

机译:永磁同步电动机转矩脉动最小化自适应控制器的设计与实现

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This paper addresses the problem of torque ripple minimization in permanent magnet synchronous motors (PMSMs) and proposes an adaptive feedback structure as a solution. A model of PMSM that includes a torque ripple phenomenon is first developed and tested. While slightly different from the conventional one, our model is still compact and suitable for control. All parameters of the model have physical interpretation, and can either be measured directly or estimated in a numerically reliable procedure. An adaptive control algorithm is then described, enabling speed tracking while minimizing the torque ripple. Finally, the proposed algorithm is verified in simulations and implemented in a hardware setup. Experimental results show significant reduction of torque ripple (by 27 dB). Extensive analysis and simulations of hardware imposed limitations were performed as well, revealing and quantifying the issues that might affect practical ripple minimization performance.
机译:本文解决了永磁同步电动机(PMSM)中转矩脉动最小化的问题,并提出了一种自适应反馈结构作为解决方案。首先开发并测试了包含转矩脉动现象的PMSM模型。尽管与传统模型稍有不同,但是我们的模型仍然紧凑并且适合控制。模型的所有参数都有物理解释,可以直接测量,也可以通过数值可靠的方法估算。然后描述了一种自适应控制算法,该算法能够在最小化转矩波动的同时进行速度跟踪。最后,该算法在仿真中得到验证,并在硬件设置中实现。实验结果表明,转矩脉动显着降低(降低了27 dB)。还对硬件施加的限制进行了广泛的分析和模拟,揭示并量化了可能影响实际纹波最小化性能的问题。

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