SPAD阵列光接收机的光子探测特性及误差性能

E. Sarbazi, M. Safari, H. Haas
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引用次数: 21

摘要

本文提出了一种用于光通信的新型光子计数接收机。所提出的接收器是一个单光子雪崩二极管(SPAD)阵列,与传统光电二极管相比,它可以提供显着提高的检测灵敏度。首先,给出了单个SPAD接收机的检测统计和主要特性,并研究了淬火过程引入的SPAD死区时间对计数概率和有效计数率的影响。然后将该方法扩展到考虑SPAD阵列。利用高斯近似推导了大尺寸SPAD阵列的计数分布,并对不同尺寸阵列的有效计数率进行了评价和比较。研究发现,即使在SPAD阵列中,死区时间对最大可实现计数率仍有重要影响,阵列的填充因子对性能和计数率影响很大,必须认真处理。研究了SPAD背景计数和填充因子对开关键控(OOK)调制光通信系统误差性能的影响。研究表明,误码率(BER)主要取决于背景计数,并随着填充因子的增加而提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photon detection characteristics and error performance of SPAD array optical receivers
In this paper a novel photon counting receiver for optical communication applications is proposed. The proposed receiver is a single photon avalanche diode (SPAD) array which can provide a significantly improved detection sensitivity compared to conventional photodiodes. First, the detection statistics and main characteristics of a single SPAD receiver is presented, and the effects of the SPAD dead time, which is introduced by the quenching process, on the counting probability and effective count rate are studied. The approach is then extended to account for SPAD arrays. Using a Gaussian approximation, the counting distribution of a large size SPAD array is derived and effective count rate of arrays with different sizes is evaluated and compared. It is found that even in SPAD arrays, dead time still has a significant role in the maximum achievable count rate, and the fill factor of the array greatly affects the performance and count rate and has to be carefully dealt with. The impact of SPAD background counts and fill factor on the error performance of an on-off keying (OOK) modulation optical communication system is also investigated. It is shown that the bit error rate (BER) depends critically on back ground counts and improves with increasing fill factor.
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