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Optimum manipulator path generation based on improved differential evolution constrained optimization algorithm

机译:基于改进差分演化约束优化算法的最佳操纵路径

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摘要

A new improved differential evolution constrained optimization algorithm is proposed to determine the optimum path generation of a rock-drilling manipulator with nine degrees of freedom. This algorithm is developed to minimize the total joint displacement without compromising the pose accuracy of the end-effector. Considering the rule for optimal operation time and smooth joint motion, total joint displacement and minimization of the end-effector pose error are respectively taken as the optimization objective and constraints. In the proposed algorithm, the inverse kinematics solution is computed by self-adaptive mutation differential evolution constrained optimization (SAMDECO) algorithm. Unlike conventional differential evolution (DE) algorithms, in the process of selection operation, the proposed algorithm takes full advantages of the information of excellent infeasible solutions in the contemporary population and scales the contribution of position constraint and orientation constraint. Consequently, the search process is guided to approach the optimal solution from both feasible and infeasible regions, which tremendously improves convergence accuracy and convergence rate. Some contrastive experiments are conducted with the basic self-adaptive mutation differential evoluton (SAMDE) algorithm. The results indicate that the proposed algorithm outperforms the basic SAMDE algorithm in terms of compliance of joints, which raises operation efficiency and plays an important role in engineering services value.
机译:提出了一种新的改进的差分演化约束优化算法,以确定具有九个自由度的凿岩机操纵器的最佳路径生成。开发了该算法以最小化总接合位移,而不会影响末端效应器的姿势精度。考虑到最佳操作时间和平滑接头运动的规则,分别作为优化目标和约束来分别作为优化目标和约束的总关节位移和最小化。在所提出的算法中,通过自适应突变差分演进约束(SAMDECO)算法来计算逆运动学解决方案。与传统的差分演进(DE)算法不同,在选择操作过程中,所提出的算法在当代人口中出色的不可行解决方案的信息充分优势,并缩放了位置约束和定向约束的贡献。因此,引导搜索过程从可行和不可行区域接近最佳解决方案,这极大地提高了收敛准确性和收敛速率。一些对比实验用基本自适应突变差分Evoluton(SAMDE)算法进行。结果表明,该算法在关节的顺应方面优于基本的SAMDE算法,这提高了运营效率并在工程服务价值中发挥着重要作用。

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