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首页> 外文期刊>Journal of Mechanical Design >Mechanical Design of a Robotic System for Automatic Installation of Magnetic Markers on the Roadway
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Mechanical Design of a Robotic System for Automatic Installation of Magnetic Markers on the Roadway

机译:自动在车道上安装磁性标记的机器人系统的机械设计

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摘要

Magnetic markers embedded into the roadway pavements are used in Intelligent Transportation Systems to provide the reference signals necessary for guiding and controlling vehicles. This technology has already been implemented in several locations in California to provide driver assistance for snowplow operators in harsh winter environments. Installation of these magnetic markers into the roadway pavement is a tedious manual operation. In this paper, we present a novel design of a robotic system developed for installation of these magnetic markers into the roadway pavement. It is shown how dynamic modeling and simulation can be used with simple experimentation to develop a mechanical design of a robotic system to overcome undesirable effects of vibrations due to drilling the roadway. In addition, two new and innovative concepts are introduced in the design of a robotic system. One is the design of a roller-type traction drive to achieve linear motion that can be used in a gantry robotic system and the second is a self-alignment mechanism for proper insertion of magnetic markers that can be used for any insertion and assembly operations.
机译:嵌入人行道的磁性标记用于智能交通系统中,以提供引导和控制车辆所需的参考信号。这项技术已在加利福尼亚州的多个地方实施,以在严酷的冬季环境中为扫雪机操作员提供驾驶员帮助。将这些磁性标记物安装到路面中是繁琐的手动操作。在本文中,我们提出了一种新颖的机器人系统设计,该系统旨在将这些磁性标记安装到路面中。它显示了如何通过简单的实验将动态建模和仿真用于开发机器人系统的机械设计,以克服由于钻探巷道而产生的不希望有的振动影响。此外,在机器人系统的设计中引入了两个新的创新概念。一种是辊式牵引驱动器的设计,该驱动器可实现线性运动,可用于龙门机器人系统;第二种是用于自动插入磁性标记的自对准机制,可用于任何插入和组装操作。

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