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Recent Developments in the Design, Capabilities and Autonomous Operations of a Lightweight Surface Manipulation System and Test-bed

机译:轻型表面操纵系统和试验台的设计,功能和自主操作的最新发展

摘要

The first generation of a versatile high performance device for performing payload handling and assembly operations on planetary surfaces, the Lightweight Surface Manipulation System (LSMS), has been designed and built. Over the course of its development, conventional crane type payload handling configurations and operations have been successfully demonstrated and the range of motion, types of operations and the versatility greatly expanded. This enhanced set of 1st generation LSMS hardware is now serving as a laboratory test-bed allowing the continuing development of end effectors, operational techniques and remotely controlled and automated operations. This paper describes the most recent LSMS and test-bed development activities, that have focused on two major efforts. The first effort was to complete a preliminary design of the 2nd generation LSMS that has the capability for limited mobility and can reposition itself between lander decks, mobility chassis, and fixed base locations. A major portion of this effort involved conducting a study to establish the feasibility of, and define, the specifications for a lightweight cable-drive waist joint. The second effort was to continue expanding the versatility and autonomy of large planetary surface manipulators using the 1st generation LSMS as a test-bed. This has been accomplished by increasing manipulator capabilities and efficiencies through both design changes and tool and end effector development. A software development effort has expanded the operational capabilities of the LSMS test-bed to include; autonomous operations based on stored paths, use of a vision system for target acquisition and tracking, and remote command and control over a communications bridge.
机译:设计和制造了用于在行星表面上执行有效载荷处理和组装操作的第一代多功能高性能设备,即轻型表面操纵系统(LSMS)。在其发展过程中,已经成功地证明了传统的起重机类型的有效载荷处理配置和操作,并且运动范围,操作类型和多功能性得到了极大的扩展。现在,这种增强的第一代LSMS硬件集可以用作实验室测试平台,从而可以继续开发末端执行器,操作技术以及远程控制和自动化操作。本文介绍了最新的LSMS和测试平台开发活动,这些活动集中在两个主要方面。第一步是完成第二代LSMS的初步设计,该产品具有有限的机动性,可以在着陆甲板,机动底盘和固定基地位置之间重新定位。这项工作的主要部分涉及进行一项研究,以建立并确定轻型电缆传动腰部接头的规格。第二项工作是使用第一代LSMS作为测试平台,继续扩大大型行星表面操纵器的多功能性和自治性。通过设计变更以及工具和末端执行器的开发来提高操纵器的功能和效率,可以实现这一点。软件开发工作已将LSMS测试平台的操作能力扩展到了以下范围:基于存储路径的自主操作,使用视觉系统进行目标获取和跟踪以及对通讯桥进行远程命令和控制。

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