Speed control of two-mass mechanical loads in electric drives

S. Saarakkala, Marko Hinkkanen, Kai Zenger
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引用次数: 12

Abstract

This paper deals with model-based two-degrees-of-freedom (2DOF) speed control of two-mass systems. An analytic gain selection of a proportional integral (PI) type feedback controller is proposed. The gains are given as functions of system parameters and desired dominant closed-loop poles. An analytic design of a prefilter is given to complete the 2DOF structure, using the pole-zero distribution of the feedback loop. The prefilter design covers step, ramp, and parabolic reference tracking. The proposed 2DOF controller is evaluated by means of simulations and experiments. The experimental setup consists of two 4-kW servo motors coupled together with a toothed belt. It was found that the proposed controller gives good reference tracking for step and dynamic commands as well as robust and fast load-torque rejection.
电力驱动中双质量机械负载的速度控制
本文研究了基于模型的双质量系统的两自由度速度控制问题。提出了一种比例积分(PI)型反馈控制器的解析增益选择方法。增益是系统参数和期望的主导闭环极点的函数。利用反馈回路的极零分布,给出了一种预滤波器的解析设计,以完成二自由度结构。预滤波器设计包括阶跃、斜坡和抛物线参考跟踪。通过仿真和实验对所提出的二自由度控制器进行了评价。实验装置由两个4kw的伺服电机与齿形皮带耦合在一起组成。结果表明,该控制器对阶跃指令和动态指令具有良好的参考跟踪能力,并且具有鲁棒、快速的负载-转矩抑制能力。
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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