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An Optimization-Based Initial Position Estimation Method for Switched Reluctance Machines

机译:切换磁阻机基于优化的初始位置估计方法

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摘要

A new method to detect the initial rotor position of switched reluctance machine (SRM) is presented in this article. Unlike most conventional position estimation methods, the proposed method does not need any extra premeasurement and only the data with finite element method (FEM) are required. First, a linear regression model (LRM) is presented to describe the relationship between FEM and measured inductance characteristics. Then, to detect the position, the residual sum of squares of the proposed LRM is considered as an objective function, which is a convex function with rotor position. The rotor position can be estimated by minimizing the objective function with the golden-section search method. Finally, the accuracy of the proposed estimation algorithm is validated by the experimental results on a three-phase 12/8 pole SRM prototype. Compared with the existing position estimation methods, the proposed method has higher accuracy and less measurement effort. The proposed method can serve as a supplement to provide accurate initial position information for incremental position sensors.
机译:在本文中提出了一种检测开关磁阻机(SRM)初始转子位置的新方法。与大多数传统位置估计方法不同,所提出的方法不需要任何额外的前置预热,并且仅需要具有有限元方法(FEM)的数据。首先,提出了线性回归模型(LRM)以描述有限元和测量的电感特性之间的关系。然后,为了检测位置,所提出的LRM的剩余平方和被认为是目标函数,其是具有转子位置的凸起功能。通过使Golden-段搜索方法最小化目标函数,可以估计转子位置。最后,通过在三相12/8极SRM原型上的实验结果验证了所提出的估计算法的准确性。与现有位置估计方法相比,所提出的方法具有更高的准确性和测量效率。该方法可以用作补充,以提供用于增量位置传感器的准确初始位置信息。

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