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A Multi-Layer Approach of Interactive Path Planning for Assisted Manipulation in Virtual Reality

机译:虚拟现实中辅助操纵的交互式路径规划的多层方法

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摘要

This work considers Virtual Reality (VR) applications dealing with objects manipulation (such as industrial product assembly, disassembly or maintenance simulation). For such applications, the operator performing the simulation can be assisted by path planning techniques from the robotics research field. A novel automatic path planner involving geometrical, topological and semantic information of the environment is proposed for the guidance of the user through a haptic device. The interaction allows on one hand, the automatic path planner providing assistance to the human operator, and on the other hand, the human operator to reset the whole planning process suggesting a better suited path. Control sharing techniques are used to improve the assisted manipulation ergonomics by dynamically balancing the automatic path planner authority according to the operator involvement in the task, and by predicting user’s intent to integrate it as early as possible in the planning process.
机译:这项工作考虑了处理对象操作(例如工业产品组装,拆卸或维护模拟)的虚拟现实(VR)应用程序。对于此类应用,可以通过机器人研究领域的路径规划技术来协助执行模拟的操作员。提出了一种新颖的涉及环境的几何,拓扑和语义信息的自动路径规划器,以通过触觉设备指导用户。交互一方面允许自动路径规划器为操作员提供帮助,另一方面,操作员可以重置整个规划过程,从而提出一条更合适的路径。控制共享技术用于通过根据操作员在任务中的参与程度动态平衡自动路径计划者的权限,并预测用户在计划过程中尽早集成的意图,从而改善辅助操作的人体工程学。

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