The weight selection in the LQ optimal control for an electrical drive system

C. Botan, A. Onea
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引用次数: 6

Abstract

In this paper, a linear-quadratic (LQ) optimal control problem is studied. The control method is very general and can be applied to DC motor drive systems and, also, to AC motor drive systems provided with field oriented control. The LQ optimal control problem with a finite horizon implies the use of a time-variant controller. The implementation of such a controller in practical applications is difficult and requires a great amount of CPU time. This paper indicates an easier approach to the implementation of these types of controllers using only invariant blocks. This controller uses constant feedback and correction depending on the initial state of the plant. These ideas are applied to the optimal control of a DC motor drive system. The aim of the analyses performed in this paper is to ensure reduced energy consumption and good behaviour of the system in the transient and steady state. The results allow the development of a selection guide of the weight parameters of the criterion, which means a good choice of the criterion in the design of an optimal controller. In the last section, experimental real-time results show the validity of the proposed method and the effectiveness of the transputer-based controller. Emphasis is also placed on the good correspondence between the simulation results and experimental results with the optimal control system.
电力驱动系统LQ最优控制中的权值选择
本文研究了线性二次型(LQ)最优控制问题。这种控制方法是非常通用的,既可以应用于直流电机驱动系统,也可以应用于具有磁场定向控制的交流电机驱动系统。有限视界LQ最优控制问题需要使用时变控制器。在实际应用中实现这样的控制器是困难的,需要大量的CPU时间。本文指出了一种更简单的方法来实现这些类型的控制器仅使用不变块。该控制器根据对象的初始状态使用恒定的反馈和校正。将这些思想应用于直流电机驱动系统的最优控制。本文进行分析的目的是确保系统在瞬态和稳态下降低能耗和良好的性能。研究结果为准则权重参数的选择提供了指导,为最优控制器设计中准则的选择提供了依据。在最后一节中,实时实验结果表明了所提方法的有效性和基于传感器的控制器的有效性。仿真结果与实验结果吻合良好,并给出了最优控制系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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