基于MRAC技术的直流驱动器速度控制

S. Sheel, R. Chandkishor, O. Gupta
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引用次数: 16

摘要

直流电机在许多工业应用中得到了广泛的应用。速度控制是工业驱动器在不同运行条件下的常见要求,即负载干扰,参数不确定性,测量噪声等。传统的固定参数控制器由于存在装置运行条件的漂移,在实时应用中并不成功。自适应技术最适合这些情况。本文介绍了一种基于模型参考自适应控制(MRAC)的直流传动速度控制实例。假定负荷的波动是对装置的阶跃扰动,使其偏离期望转速。在文献中已经开发了各种自适应控制算法。采用了标准的MRAC算法,并对负载扰动、参数不确定性和存在输出测量噪声的不同值和性质进行了仿真。仿真结果证明了所提控制器在不同工况下的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Speed control of DC drives using MRAC technique
DC motors have been widely used in many industrial applications. Speed control is a common requirement in industrial drives in the presence of varying operating conditions i.e. load disturbance, parameter uncertainty, measurement noise etc. Conventional controllers with fixed parameters have not been successful for real time applications because of the drift in the plant operating conditions. Adaptive techniques are best suited for these situations. This paper presents a case study on speed control of dc drive using Model Reference Adaptive Control (MRAC). The fluctuation in load is assumed to be step disturbance on the plant, which causes the deviation from the desired speed. In the literature various adaptive control algorithms have been developed. A standard MRAC algorithm is applied and simulations have been carried out for different values and nature of load disturbances, parameter uncertainties and in the presence of output measurement noise. The simulation results reported in this paper demonstrate the effectiveness of the proposed controller against varying operating conditions.
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