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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >An adaptive-group-based differential evolution algorithm for inspecting machined workpiece path planning
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An adaptive-group-based differential evolution algorithm for inspecting machined workpiece path planning

机译:一种用于检查机加工工件路径规划的自适应组差分演化算法

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摘要

In the precision manufacturing process, accuracy and precision are crucial when designing a workpiece inspection system. An efficient system minimizes inefficiencies caused by workpieces failing to meet customer needs and delays caused by slow workpiece inspection. In this study, a workpiece inspection system for measuring path planning is proposed that uses the given coordinate of inspection points discerned from 3D images. Then, an adaptive-group-based differential evolution (AGDE) algorithm is used to optimize the measuring path. The AGDE algorithm incorporates the grouping concept into conventional differential evolution, and this improves local search ability through referencing the direction of the best solution in each group. By using the proposed method, the shortest non-colliding measuring path is obtained. Moreover, the proposed workpiece inspection system shortens the workpiece inspection time and achieves faster performance than manual measuring path planning under multiple workpiece inspection points.
机译:在精密制造工艺中,在设计工件检测系统时,精度和精度是至关重要的。高效的系统最小化工件造成的效率低下,未能满足由慢速工件检查引起的客户需求和延迟。在本研究中,提出了一种用于测量路径规划的工件检查系统,其使用从3D图像中辨别的检查点的给定坐标。然后,使用基于自适应组的差分演进(AGDE)算法来优化测量路径。 AGDE算法将分组概念融入传统的差分演进,这通过引用每个组中最佳解决方案的方向来提高本地搜索能力。通过使用所提出的方法,获得最短的非碰撞测量路径。此外,所提出的工件检测系统缩短工件检测时间,比在多个工件检测点下的手动测量路径规划更快地实现更快的性能。

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