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一种自由空间光通信象限探测器位置检测的改进方法。

An Improved Method for the Position Detection of a Quadrant Detector for Free Space Optical Communication.

机构信息

Institute of Optics and Electronics, Chinese Academy of Sciences, No. 1 Guangdian Road, Chengdu 610209, China.

School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China, No. 4 Section 2 North Jianshe Road, Chengdu 610054, China.

出版信息

Sensors (Basel). 2019 Jan 5;19(1):175. doi: 10.3390/s19010175.

Abstract

In free space optical communication, a beacon light loses too much energy after a long-distance transmission and faces strong interference from background light. The beacon light illuminated on a quadrant detector (QD) is so weak that the output signal-to-noise ratio (SNR) of a QD is very low, which leads to a significant decrease in the accuracy of the direct position detection method. To solve this problem, an improved light spot position detecting method is proposed. Since the background light and the dark current noise are white noise, we could consider concentrating the energy of QD output signal at a certain frequency point to enhance the output SNR. Therefore, a cosine signal is used to modulate the intensity of a beacon light at the transmitting end. Then the QD output photocurrents are also cosine signals with the same frequency as the modulating signal. Putting the photocurrent signals into a cross-correlation operation with a reference signal, which is the same as the modulating signal, can enhance the QD output SNR at a certain frequency point. Unfortunately, the result of the classical cross-correlation is attenuated with increasing delay. It is hard to detect the amplitude of the classical cross-correlation result. So, we used cyclic cross-correlation to obtain a stable correlation result to detect its amplitude accurately. The experiment results show that even when the QD output SNR is less than -17 dB, the detection root-mean-square error of the proposed method is 0.0092 mm, which is a quarter of the direct position detection method. Moreover, this method only needs a small amount of data to accomplish the calculation and is especially suitable for real-time spot position detection.

摘要

在自由空间光通信中,信标光经过长距离传输后会损失大量能量,并且会受到背景光的强烈干扰。照在四象限探测器(QD)上的信标光非常弱,以至于 QD 的输出信噪比(SNR)非常低,这导致直接位置检测方法的准确性显著降低。为了解决这个问题,提出了一种改进的光斑位置检测方法。由于背景光和暗电流噪声是白噪声,我们可以考虑将 QD 输出信号的能量集中在某个频率点,以提高输出 SNR。因此,在发射端使用余弦信号来调制信标光的强度。然后,QD 输出光电流也是与调制信号频率相同的余弦信号。将光电流信号与参考信号(与调制信号相同)进行互相关运算,可以在某个频率点增强 QD 输出 SNR。不幸的是,经典互相关的结果随着延迟的增加而衰减,很难检测到经典互相关结果的幅度。因此,我们使用循环互相关来获得稳定的相关结果,以准确地检测其幅度。实验结果表明,即使在 QD 输出 SNR 小于-17dB 的情况下,所提出方法的检测均方根误差也为 0.0092mm,仅为直接位置检测方法的四分之一。此外,该方法只需要少量数据即可完成计算,特别适用于实时光斑位置检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8bf/6338972/d1aa2fbc224e/sensors-19-00175-g001.jpg

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