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Newton's method based self calibration for a 3D ultrasound tomography system

机译:基于牛顿方法的3D超声层析成像系统自校准

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A device for 3D ultrasound computer tomography system is currently under development at KIT with the goal of high-resolution images for early breast cancer detection. With its semi-ellipsoidal positioning of 2041 ultrasound transducers around the breast in space, full 3D images can be reconstructed. Calibration process of such a complex system is very time-consuming and difficult. This paper proposes a Newton's method based self calibration using time-of-flight measurements between each emitter and receiver. One unique feature of this method is the separation of each potential error sources in the system and sequential calibration according to their magnitudes. This enables the analysis of each error component in the system. Simulation and application on real data have both shown sub-wavelength accuracy in the calibration results.
机译:KIT目前正在开发3D超声计算机断层扫描系统的设备,其目标是用于早期乳腺癌检测的高分辨率图像。通过2041个超声换能器在乳房周围的半椭圆形定位,可以重建完整的3D图像。如此复杂的系统的校准过程非常耗时且困难。本文提出了一种基于牛顿法的自校准方法,该方法使用了每个发射器和接收器之间的飞行时间测量。该方法的一个独特功能是系统中每个潜在误差源的分离,并根据其幅度进行顺序校准。这样可以分析系统中的每个错误组件。在实际数据上的仿真和应用都在校准结果中显示了亚波长精度。

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