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Application of Combinatorial Interaction Design for DC Servomotor PID Controller Tuning

机译:组合交互设计在直流伺服PID控制器整定中的应用

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Combinatorial optimization has been used in different research areas. It has been employed successfully in software testing fields to construct minimum set of combinations (i.e., in terms of size) which in turn represents the minimum number of test cases. It was also found to be a successful approach that can be applied to solve other similar problems in different fields of research. In line with this approach, this paper presents a new application of the combinational optimization in the design of PID controller for DC servomotor. The design of PID controller involves the determination of three parameters. To find optimal initial PID parameters, different tuning methods have been proposed and designed in the literature. The combinatorial design is concerned with the arrangement of finite set of elements into combinatorial set that satisfies some given constraints. Consequently, the proposed method takes the interaction of the input parameters as a constraint for constructing this combinatorial set. The generated sets are then used in the proposed tuning method. The method proved its effectiveness within a set of experiments in a simulated environment.
机译:组合优化已用于不同的研究领域。它已成功地用于软件测试领域,以构造最小的组合集(即,就大小而言),这又代表了最小的测试用例数。还发现这是一种成功的方法,可用于解决不同研究领域中的其他类似问题。根据这种方法,本文提出了组合优化在直流伺服电机PID控制器设计中的新应用。 PID控制器的设计涉及三个参数的确定。为了找到最佳的初始PID参数,文献中已经提出并设计了不同的调节方法。组合设计涉及满足一些给定约束的有限元元素到组合集中的排列。因此,所提出的方法将输入参数的交互作为构建此组合集的约束。然后将生成的集合用于建议的调整方法中。该方法在模拟环境中的一组实验中证明了其有效性。

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