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FPGA-based Detection Module for the Chromatic Confocal Measurement Sensor

机译:基于FPGA的色彩共焦测量传感器的检测模块

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Chromatic confocal microscopy (CCM) has the advantages of high accuracy, strong anti-interference ability and sensitivity to objects with low reflectivity. Its disadvantage is that it needs to measure all points on the surface of the measured object, which is an inefficient measurement. Currently, domestic researches mostly focuses on the development of dispersed objective lens, the research on improving the measurement efficiency is not enough. This article introduces a method that can improve the efficiency of CCM measurement. It uses hardware to accelerate the calculation of the decoding algorithm, which not only speeds up the signal processing time but also reduces a lot of data transmission time. The hardware used for acceleration is a photo-detector driven by field-programmable gate array (FPGA). This paper also designed the optical path in front of the photo detector, which can make the photo detector receive accurate spectral information. Through calculation and simulation, our method can ensure accuracy and increase the measurement speed of CCM.
机译:彩色共聚焦显微镜(CCM)具有高精度,强烈的抗干扰能力和对物体具有低反射率的敏感性的优点。其缺点是它需要测量测量物体表面上的所有点,这是效率低下的测量。目前,国内研究主要侧重于分散物镜的发展,提高测量效率的研究是不够的。本文介绍了一种可以提高CCM测量效率的方法。它使用硬件来加速解码算法的计算,这不仅加速了信号处理时间,而且还减少了大量的数据传输时间。用于加速的硬件是由现场可编程门阵列(FPGA)驱动的光检测器。本文还设计了光电检测器前面的光路,其可以使光电检测器接收精确的光谱信息。通过计算和仿真,我们的方法可以确保准确性并提高CCM的测量速度。

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