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Sensorless Simplified Finite Control Set Model Predictive Control of SynRM Using Finite Position Set Algorithm

机译:无传感器简化的有限控制SynrM使用有限位置集算法的预测控制

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摘要

The sensorless application of predictive control in drive applications has been investigated for a decade. Finite control set model predictive control (FCS-MPC) is one of the easy and practical methods in the predictive category. Several methods have been investigated for the sensorless application of FCS-MPC. Since the sensitivity of the predictive method to the speed error is more than that of the classical control methods, sophisticated speed estimators should be used in this method. The model reference adaptive system (MRAS) has been the most successful estimator. The main problem of this estimator is tuning the coefficients in different operating points and the stability of the adaptive function. The finite position set technique is a very recent solution. In this method, the adaptive function is used as the cost function and the optimum rotor position is selected by minimizing that. However, the numerous iteration is a barrier for application to the predictive method. Also, the application of the method for the synchronous reluctance motor (SynRM) is a challenge because of the lack of the rotor model as the adaptive function. In this paper, the finite position technique is modified for the predictive application. The number of iterations is reduced by an optimization method based on sensitivity analysis. Also, a new and simple function is used as the adaptive error function in order to apply the method to the sensorless control of the SynRM. The proposed method is evaluated by simulation and experiment.
机译:已经研究了驱动应用中预测控制的无传感器应用已经研究了十年。有限控制集模型预测控制(FCS-MPC)是预测类别中简单实用的方法之一。已经研究了几种方法,用于FCS-MPC的无传感器应用。由于预测方法对速度误差的灵敏度大于经典控制方法的灵巧,因此应该在该方法中使用复杂的速度估计。模型参考自适应系统(MRAS)是最成功的估算器。该估计器的主要问题正在调整不同的操作点中的系数和自适应功能的稳定性。有限位置集技术是最近的解决方案。在该方法中,使用自适应功能作为成本函数,通过最小化来选择最佳转子位置。然而,许多迭代是应用于预测方法的障碍。此外,由于缺少转子模型作为自适应功能,因此对同步磁阻电动机(Synrm)的应用是挑战。本文修改了有限位置技术,用于预测应用。基于灵敏度分析的优化方法,减少了迭代次数。此外,新的和简单的功能用作自适应误差功能,以便将方法应用于Synrm的无传感器控制。所提出的方法是通过仿真和实验进行评估的。

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