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Position Error Correction Using Homography in Discretized Positioning Circuit for Gamma-Ray Imaging Detection System

机译:伽玛射线成像检测系统离散定位电路中使用射线照相术进行位置误差校正

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摘要

A discretized positioning circuit (DPC) based on a resistive network has been developed to reduce the size of a gamma-ray detection system using multi-anode photomultiplier tubes (MA-PMT) in an array, because it can drastically decrease the number of output channels. The output signal from the gamma-ray detection system is a current pulse generated in each tube that contains information about the gamma-ray energy and detecting position in the array. The output current pulse is distributed to four outputs according to the resistance ratio of the resistive network in the DPC, and the detected position is estimated using the height values of the four distributed current pulses. However, owing to parasitic capacitors of MA-PMT connected in parallel to resistors in the resistive network, the four output pulses are affected by the RC time constants. In particular, when the duration of the input signal is not long enough, the height values of the distributed pulses are reduced, and thereby the position error increases significantly. In this paper, we present a new distortion correction method that considers the pulse duration and the RC time constant. In order to correct the position error, we employed homography, which is a coordinate transformation method. The ideal grid was mapped to a new grid for the distorted position. Using this method, error correction was completely achieved, even for short current pulses.
机译:已经开发出基于电阻网络的离散定位电路(DPC),以减少在阵列中使用多阳极光电倍增管(MA-PMT)的伽马射线检测系统的尺寸,因为它可以大大减少输出数量渠道。伽马射线检测系统的输出信号是在每个管中产生的电流脉冲,其中包含有关伽马射线能量和阵列中检测位置的信息。根据DPC中电阻网络的电阻比,将输出电流脉冲分配到四个输出,并使用四个分配电流脉冲的高度值估算检测到的位置。但是,由于MA-PMT的寄生电容器与电阻网络中的电阻器并联连接,因此四个输出脉冲受RC时间常数的影响。特别地,当输入信号的持续时间不够长时,分配脉冲的高度值减小,从而位置误差显着增大。在本文中,我们提出了一种新的失真校正方法,该方法考虑了脉冲持续时间和RC时间常数。为了纠正位置误差,我们采用了单应性,这是一种坐标变换方法。理想的栅格被映射到一个新的栅格以适应变形的位置。使用这种方法,即使对于短电流脉冲,也可以完全实现误差校正。

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