永磁直流电动机转速控制参数辨识的参数估计方法比较

Muhammed Reşit Çorapsız
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引用次数: 0

摘要

比例-积分-导数(PID)控制器是一种重要的数字控制结构,在许多速度、位置和温度应用中经常被设计人员使用。这种控制结构的主要问题是数学计算量大,需要精确的参数确定。在本研究中,估计的控制参数,以克服上述两个主要问题的速度控制的永磁直流电动机(PMDC)实时生产。针对这一过程,提出了基于信任区域反射(TRR)算法的非线性最小二乘(NLS)优化方法、基于活动集(AS)算法的模式搜索(PS)优化方法和基于AS算法的单纯形搜索(SS)优化方法。对所提出的技术进行了详细的解释,并选择了平方和误差(SSE)作为这些技术的目标函数。在不同的转速、负载和电枢电阻条件下,对单个参考的预测值进行了测试。在不同的负载条件下,对PMDC电机的转速控制进行了测试。所得结果表明,NLS-TRR技术在计算时间上更胜一筹,而SS-AS技术在精确参数估计方面更胜一筹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Parameter Estimation Techniques for Control Parameter Identification of Permanent Magnet Direct Current Motor Speed Control

The proportional-integral-derivative (PID) controller is an important digital control structure that is frequently used by designers in many speed, position, and temperature applications. The main problem of such control structures is that the mathematical calculation burden is high and requires precise parameter determination. In this study, the control parameters were estimated to overcome the two main problems given above for the speed control of a Permanent Magnet Direct Current (PMDC) motor produced in real time. For this process, the Nonlinear Least Squares (NLS) optimization method with the Trust-Region-Reflective (TRR) algorithm, the Pattern Search (PS) optimization method with the Active-Set (AS) algorithm, and the Simplex Search (SS) optimization method with the AS algorithm have been proposed. The proposed techniques are explained in detail, and the Sum of Square Error (SSE) is chosen as the objective function for these techniques. The predicted controller values for a single reference were tested under different speed, load, and armature resistance conditions. The speed control of the PMDC motor, which was created using the parameters estimated over the specified simulation periods, was tested with different load conditions. According to the results obtained, while the NLS-TRR technique stands out in terms of calculation time, the SS-AS technique outperformed in terms of precise parameter estimation.

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