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A low-cost ultrasonic 3D measurement device for calibration of Cartesian and non-Cartesian machines

机译:一种低成本的超声波三维测量设备,用于校准笛卡尔和非笛卡尔机器

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摘要

The major obstacles to the widespread adoption of 3D measurement systems are accuracy, speed of process and the cost. At present, high accuracy for measuring 3D position has been achieved, and there have been real advances in reducing measurement time, but the cost of such systems remains high. A high-accuracy and high-resolution ultrasonic distance measurement system has been achieved in this project by creating multi-frequency continuous wave frequency modulation (MFCWFM) system. The low-cost system measures dynamic distance (displacements of an ultrasound transmitter) and fixed distance (distances between receivers). The instantaneous distance between the transmitter and each receiver can be precisely determined. New geometric algorithms for transmitter 3D position and receiver positing have also been developed in the current research to improve the measurement system‟s practicability. These algorithms allow the ultrasound receivers to be arbitrarily placed and located by self-calibration following a simple procedure. After the development and testing of the new 3D measurement system, further studies have also been carried out on the system, considering the two major external disturbances: air temperature drifting and ultrasound echo interference. Novel methods have been successfully developed and tested to minimize measurement errors and evaluation of speed of sound. All the enabling research described in the thesis means that it is now possible to build and implement a measurement system at reasonable cost for industrial exploitation. This will have the necessary performance to provide ultrasonic 3D position measurements in real time for monitoring position.
机译:广泛采用3D测量系统的主要障碍是准确性,处理速度和成本。目前,已经实现了用于测量3D位置的高精度,并且在减少测量时间方面已经取得了真正的进步,但是这种系统的成本仍然很高。通过创建多频连续波调频(MFCWFM)系统,在该项目中实现了高精度,高分辨率的超声波测距系统。低成本系统可测量动态距离(超声波发射器的位移)和固定距离(接收器之间的距离)。发射机和每个接收机之间的瞬时距离可以精确确定。在当前的研究中,还开发了用于发射器3D位置和接收器定位的新几何算法,以提高测量系统的实用性。这些算法允许按照简单的程序通过自校准将超声波接收器任意放置和定位。在开发和测试新的3D测量系统之后,还考虑了两个主要的外部干扰:空气温度漂移和超声回波干扰,对该系统进行了进一步的研究。已经成功开发和测试了新颖的方法,可以最大程度地减少测量误差和评估声速。论文中描述的所有使能研究表明,现在有可能以合理的成本构建和实施测量系统,以进行工业开发。这将具有必要的性能,可实时提供超声3D位置测量以监视位置。

著录项

  • 作者

    Aldawi Fouad Juma;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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