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Time-of-Flight Based Calibration of an Ultrasonic Computed Tomography System

机译:超声计算机断层扫描系统基于飞行时间的校准

摘要

The paper presents a novel method for calibration of measuring geometry and of individual signal delays of transducers in ultrasonic computed tomography (USCT) systems via computational processing of multiple time-of-flight measurements of ultrasonic (US) impulses. The positions and time-delay parameters of thousands of ultrasonic transducers inside the USCT tank are calibrated by this approach with a high precision required for the tomographic reconstruction; such accuracy cannot be provided by any other known method. Although utilising similar basic principles as the global positioning system (GPS), the method is importantly generalised in treating all transducer parameters as the to-be calibrated (floating) unknowns, without any a-priori known positions and delays. The calibration is formulated as a non-linear least-squares problem, minimizing the differences between the calculated and measured time-of-arrivals of ultrasonic pulses. The paper provides detailed derivation of the method, and compares two implemented approaches (earlier calibration of individual transducers with the new approach calibrating rigid transducer arrays) via detailed simulations, aimed at testing the convergence properties and noise robustness of both approaches. Calibration using real US signals is described and, as an illustration of the utility of the presented method, a comparison is shown of two image reconstructions using the tomographic US data from a concrete experimental USCT system measuring a 3D phantom, without and after the calibration.
机译:本文提出了一种通过对超声(US)脉冲的多次飞行时间测量值进行计算处理,来校准超声计算机断层摄影(USCT)系统中换能器的几何形状和各个信号延迟的校准方法。通过这种方法可以对断层图像重建所需的高精度进行校准,从而校准USCT储罐内成千上万个超声换能器的位置和延时参数。这种准确性无法通过任何其他已知方法提供。尽管利用了与全球定位系统(GPS)类似的基本原理,但该方法在将所有换能器参数视为要校准(浮动)的未知量时得到了重要的概括,而没有任何先验的已知位置和延迟。校准公式化为非线性最小二乘问题,可最大程度地减少超声波脉冲的计算到达时间与测量到达时间之间的差异。本文提供了该方法的详细推导,并通过详细的模拟比较了两种已实现的方法(较早地校准单个换能器和校准刚性换能器阵列的新方法),旨在测试这两种方法的收敛性和噪声鲁棒性。描述了使用真实US信号进行的校准,并作为本方法实用性的说明,比较了使用来自测量3D体模的具体实验USCT系统的层析X射线数据的两个图像重建的比较,没有进行校准也没有进行校准。

著录项

  • 作者

    Filipik A.; Jan J.; Peterlik I.;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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