轨迹驱动的高速重载作业机器人拓扑设计

IF 4.5 1区 工程技术 Q1 ENGINEERING, MECHANICAL
Jun Li , Chuanying Wang , Dong Wang , Kaixuan Chen , Yimin Song , Tao Sun
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引用次数: 0

摘要

提出了一种高速重载作业机器人的轨迹驱动拓扑设计方法。首先,根据机器人的功能要求和冲压过程的特点,生成包括末端路径和连杆包络在内的拓扑运动轨迹;在运动轨迹和拓扑构成之间建立了对偶映射关系。由此导出基本拓扑。其次,以机构性能为进化目标,通过优化驱动关节和协调关节位移,生成不同的拓扑进化策略;根据不同的进化策略,形成了不同的进化模式。进化拓扑是根据进化模式从基本拓扑生成的。最后,综合考虑冲压场景特点、结构设计可行性,制定筛选比较标准,建立了多级拓扑评价体系。根据评价体系,在不同层次选择优拓扑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topology design of high-speed and heavy-duty operation robot driven by trajectory
This paper proposes a trajectory-driven topology design method for the high-speed and heavy-duty operation robot. Firstly, a topology motion trajectory is generated based on the functional requirements of the robot and the characteristics of the stamping process, including end path and link envelopes. A dual mapping relationship is established between the motion trajectory and the topology composition. From this, basic topologies are derived. Secondly, with the performance of the mechanism as the evolution goal, different topology evolution strategies are generated by optimizing the driving joints and coordinating the joint displacements. Depending on the evolution strategies, different evolution patterns are formed. The evolution topologies are generated from the basic topologies in accordance with the evolution patterns. Finally, a multi-level topology evaluation system is established by considering the stamping scenario characteristics, structural design feasibility, and developing screening and comparison criteria. According to the evaluation system, the superior topologies are selected at different levels.
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来源期刊
Mechanism and Machine Theory
Mechanism and Machine Theory 工程技术-工程:机械
CiteScore
9.90
自引率
23.10%
发文量
450
审稿时长
20 days
期刊介绍: Mechanism and Machine Theory provides a medium of communication between engineers and scientists engaged in research and development within the fields of knowledge embraced by IFToMM, the International Federation for the Promotion of Mechanism and Machine Science, therefore affiliated with IFToMM as its official research journal. The main topics are: Design Theory and Methodology; Haptics and Human-Machine-Interfaces; Robotics, Mechatronics and Micro-Machines; Mechanisms, Mechanical Transmissions and Machines; Kinematics, Dynamics, and Control of Mechanical Systems; Applications to Bioengineering and Molecular Chemistry
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