首页> 外文会议>Conference on Advanced Materials and Devices for Sensing and Imaging; 20071112-14; Beijing(CN) >The design of a laser-based digital displacement/deflection measurement system of a remote object and its calibration
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The design of a laser-based digital displacement/deflection measurement system of a remote object and its calibration

机译:基于激光的远程物体数字位移/挠度测量系统的设计及其校准

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We describe in this paper a laser-based digital displacement measuring system, which can detect displacement or deflection of an object in a long distance. It has the advantages of nor-contact, high resolution, fast response, and more importantly being remote. In order to achieve a remote measurement, the laser beam is first collimated, and directed to the detector array, which is attached to the remote object to be measured. The relative movement between the laser source and the detector will provide a measure to the displacement or deflection of the object. This system has three major features compared with the common laser-based displacement measurement systems. The first one, remote wireless digital signal and data transmission has been used in this measurement system, which increases the stability and practicability of the system. The second one, a laser level instrument has been used as a laser source, which makes it much easier to direct the laser beam to the detector at a long distance. The last one, MCU and LED have also been investigated, which makes the system more convenient. The measurement effect is proved by experiment. The academic measuring distance of the system is 100m and it is calibrated at a distance of 20m in the lab. The measuring frequency of the system is 29Hz. The error of the system is between -0.07mm to 0.07mm and the standard error is less than 0.05mm. The standard error of the system at an immovable point in four hours is 0.0134mm. Due to its features, perspective of its appreciation should be wide.
机译:我们在本文中描述了一种基于激光的数字位移测量系统,该系统可以检测远距离物体的位移或偏转。它具有非接触,高分辨率,响应速度快以及更重要的是远距离的优势。为了实现远程测量,首先将激光束准直,然后将其导向检测器阵列,该检测器阵列将附着到要测量的远程对象上。激光源和检测器之间的相对运动将为物体的位移或偏转提供度量。与基于激光的普通位移测量系统相比,该系统具有三个主要功能。第一个远程无线数字信号和数据传输已用于此测量系统,这增加了系统的稳定性和实用性。第二种方法是使用激光水平仪作为激光源,这使得将激光束长距离引导到检测器变得更加容易。最后,MCU和LED也已进行了研究,这使系统更加方便。实验证明了测量效果。该系统的理论测量距离为100m,并且在实验室中以20m的距离进行了校准。系统的测量频率为29Hz。系统误差在-0.07mm至0.07mm之间,标准误差小于0.05mm。该系统在四个小时内的不动点处的标准误差为0.0134mm。由于其特性,对其欣赏的视野应该广阔。

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