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首页> 外文期刊>JSME International Journal, Series C. Mechanical Systems, Machine Elements and Manufacturing >Optimization of Double Loop Control Parameters for a Variable Displacement Hydraulic Motor by Genetic Algorithms
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Optimization of Double Loop Control Parameters for a Variable Displacement Hydraulic Motor by Genetic Algorithms

机译:双重循环控制参数的优化一个变量位移液压马达遗传算法

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摘要

The optimization of control gains for hydraulic servo systems is very difficult because of the high nonlinearities and uncertainties in the systems. In this paper, genetic algorithm is adopted to optimize the feedback gains for an over-centered variable displacement hydraulic motor (VDHM). The reciprocal of the ITAE criterion is proposed as the fitness function that evaluates the control performance. The appropriate specification of the genetic algorithms and the search range of each control gain for the speed control system are presented. It is found that the near-optimal values of the feedback gains can be obtained within 10 generations, which corresponds to about 100 experiments. The optimal gains are also obtained when the inertia or the supply pressure is varied. Optimized feedback gains are confirmed by plotting the fitness function in a given gain space and it was verified that the genetic algorithm is an efficient scheme in optimizing feedback gains for hydraulic servo systems.
机译:优化液压控制的收益伺服系统是非常困难的因为高的非线性和不确定性系统。采用优化的反馈增益over-centered可变排量液压电动机(VDHM)。准则提出了作为适应度函数评估控制性能。适当的规范的基因每个控制的算法和搜索范围获得的速度控制系统。它是发现的算法值反馈增益可以得到在10代,这对应于约100实验。当惯性或供应压力多样。策划的适应度函数在给定收益空间和证实遗传在优化算法是一种有效的方案液压伺服系统的反馈增益。

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