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Analysis and design of a novel mini-platform employing vibration micro-motors

机译:一种采用振动微电机的新型微型平台的分析与设计

摘要

This paper presents the analysis and design of a novel mini-robotic platform that is able to perform translational and rotational sliding with sub-micrometer positioning accuracy and develop velocities up to 1.5 mm/s. The platform actuation system employs vibration micromotors. The dynamic model of the platform and of its actuation system is presented, and analytical expressions are derived which provide design guidelines for the platform. Simulations are performed which verify the analytical results and demonstrate the platform capabilities. The platform design is simple, compact and of low cost. Also the energy supply of the mechanism can be accomplished in an untethered mode using simple means such as single cell batteries. © 2005 IEEE.
机译:本文介绍了一种新型微型机器人平台的分析和设计,该平台能够以亚微米级的定位精度执行平移和旋转滑动,并且可以将速度提高到1.5 mm / s。平台驱动系统采用振动微电机。给出了平台及其驱动系统的动态模型,并推导了解析表达式,为平台提供了设计指南。进行仿真以验证分析结果并演示平台功能。该平台设计简单,紧凑且成本低廉。而且,该机构的能量供应可以使用简单的手段(例如单电池)以不受限制的方式完成。 ©2005 IEEE。

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