Enhancing measurement accuracy of position sensitive detector (PSD) systems using the Kalman filter and distortion rectifying

Yudong Luo, Yantao Shen, José Cordero, J. Zaklit
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引用次数: 5

Abstract

Factors affecting measurement accuracy of Position Sensitive Detector (PSD) systems consist of inaccuracies caused by interface circuits, system connection, outside environment change, and the semi-conductive properties of the sensor. The presence of these factors causes noises and distortions that are interpreted as a valid signal by the PSD system. As a result, these inaccuracies heavily degrade the PSD performance and hamper the measurement resolution and accuracy of the PSD system, which greatly limit its applications in micro/nano positioning systems. Our work is to (1) design a Kalman filter for the system that is used to recursively and optimally estimate the laser spot position value of the modeled second-order linear lateral effect PSD sensing system from a series of measurements mixed with these noises and (2) develop a distortion rectifying methodology to collect pincushion-type radial distortion associated with the lateral effect PSD systems, so as to enhance measurement accuracy in a larger active area of the PSD. After implementation, both the developed Kalman filter and distortion rectifying algorithm can greatly improve the measurement accuracy of the PSD systems. It will be very useful in a wide variety of applications that use a PSD embedded system.
利用卡尔曼滤波和畸变整流提高位置敏感探测器(PSD)系统的测量精度
影响位置敏感探测器(PSD)测量精度的因素包括接口电路、系统连接、外界环境变化以及传感器的半导体特性等。这些因素的存在导致噪声和失真,被PSD系统解释为有效信号。这些误差严重影响了PSD的性能,影响了PSD系统的测量分辨率和精度,极大地限制了PSD在微纳定位系统中的应用。我们的工作是(1)为系统设计一个卡尔曼滤波器,用于从混合这些噪声的一系列测量中递归地最优估计建模二阶线性侧向效应PSD传感系统的激光光斑位置值;(2)开发一种畸变校正方法来收集与侧向效应PSD系统相关的针座型径向畸变,从而提高PSD在更大的有源区域内的测量精度。实现后,所提出的卡尔曼滤波和畸变校正算法都能极大地提高PSD系统的测量精度。它将在使用PSD嵌入式系统的各种应用程序中非常有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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