遥操作
软件部署
计算机科学
灵活性(工程)
冗余(工程)
人机交互
人气
范围(计算机科学)
透视图(图形)
背景(考古学)
移动机器人
移动机械手
工程类
机器人
人工智能
软件工程
古生物学
操作系统
统计
程序设计语言
生物
社会心理学
数学
心理学
作者
Shantanu Thakar,Srivatsan Srinivasan,Sarah Al-Hussaini,Prahar M. Bhatt,P. Rajendran,Yeo Jung Yoon,Neel Dhanaraj,Rishi K. Malhan,Matthias Schmid,Venkat Krovi,Satyandra K. Gupta
摘要
Abstract Mobile manipulators that combine base mobility with the dexterity of an articulated manipulator have gained popularity in numerous applications ranging from manufacturing and infrastructure inspection to domestic service. Deployments span a range of interaction tasks with the operational environment comprising minimal interaction tasks such as inspection and complex interaction tasks such as logistics resupply and assembly. This flexibility, offered by the redundancy, needs to be carefully orchestrated to realize enhanced performance. Thus, advanced decision-support methodologies and frameworks are crucial for successful mobile manipulation in (semi-) autonomous and teleoperation contexts. Given the enormous scope of the literature, we restrict our attention to decision-support frameworks specifically in the context of wheeled mobile manipulation. Hence, here, we present a classification of wheeled mobile manipulation literature while accounting for its diversity. The intertwining of the deployment tasks, application arenas, and decision-making methodologies are discussed with an eye for future avenues for research.
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