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A dynamic tactile sensor on photoelastic effect

机译:光弹性效应的动态触觉传感器

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摘要

Certain photoelastic materials exhibit birefringent characteristics at a very low level of strain. This property of material may be suitable for dynamic or wave propagation studies, which can be exploited for designing tactile sensors. This paper presents the design, construction and testing of a novel dynamic sensor based on photoelastic effect, which is capable of detecting object slip as well as providing normal force information. The paper investigates the mechanics of object slip, and develops an approximate model of the sensor. This allows visualization of various parameters involved in the sensor design. The model also explains design improvements necessary to obtain continuous signal during object slip. The developed sensor has been compared with other existing sensors and experimental results from the sensor have been discussed. The sensor is calibrated for normal force which is in addition to the dynamic signal that it provides from the same contact location. The sensor has a simple design and is of a small size allowing it to be incorporated into robotic fingers, and it provides output signals which are largely unaffected by external disturbances.
机译:某些光弹性材料在非常低的应变水平下表现出双折射特性。材料的这种特性可能适用于动态或波传播研究,可以将其用于设计触觉传感器。本文介绍了一种基于光弹效应的新型动态传感器的设计,构造和测试,该传感器能够检测物体滑移并提供法向力信息。本文研究了物体滑移的力学,并开发了传感器的近似模型。这允许可视化传感器设计中涉及的各种参数。该模型还说明了在物体滑动过程中获得连续信号所必需的设计改进。已将开发的传感器与其他现有传感器进行了比较,并讨论了该传感器的实验结果。除了从相同接触位置提供的动态信号外,还针对法向力对传感器进行了校准。该传感器设计简单,体积小巧,可集成到机械手的手指中,并提供不受外界干扰影响的输出信号。

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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