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首页> 外文期刊>International Journal of Embedded Systems >A calibration algorithm for maze micromouse continuous smooth turning
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A calibration algorithm for maze micromouse continuous smooth turning

机译:迷宫微型鼠标连续平滑转弯的标定算法

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摘要

The excellent micromouse performance in a maze competition needs good sensing ability, superior walking ability, optimised intelligent algorithm and strong structure in micromouse design and manufacture. In micromouse competition, turning technology has significant effects on promoting a micromouse performance in maze walking process. The smooth turning algorithm has the advantage of finishing right-angle turns continuously without stopping. A micromouse would finish the turning more smoothly and stably while keeping a high speed, meanwhile, valuable maze solving time and spurting time could be saved for achieving better scores in competitions. In this paper, pros and cons of the algorithm are both presented. Furthermore, the main risk in smooth turning is that many single turning distance errors are accumulated to a big position error in the maze and would result in fault crashes to the maze wall. Therefore, a set of calibrating countermeasures to correct errors accumulated in continuous turning is provided as well.
机译:迷宫比赛中出色的微型鼠标性能需要在微型鼠标的设计和制造中具有良好的感应能力,出色的行走能力,优化的智能算法和强大的结构。在微型鼠标竞争中,转弯技术对于提高迷宫行走过程中的微型鼠标性能具有显著作用。平滑转弯算法的优点是连续不断地直角转弯而不会停止。微型鼠标可以在保持高速行驶的同时更平稳,平稳地完成转弯,同时,可以节省宝贵的迷宫求解时间和喷射时间,从而在比赛中获得更高的成绩。本文介绍了该算法的优缺点。此外,平滑转弯的主要风险是许多单个转弯距离误差会累积到迷宫中的大位置误差中,并可能导致迷宫壁故障。因此,还提供了一组校正对策以校正在连续转动中积累的误差。

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