具有自动信道估计和比特率检测的突发模式光子计数接收机

SPIE LASE Pub Date : 2016-04-13 DOI:10.1117/12.2222885
H. Rao, C. Devoe, A. S. Fletcher, I. Gaschits, F. Hakimi, S. Hamilton, N. Hardy, John G. Ingwersen, R. Kaminsky, J. Moores, M. Scheinbart, T. Yarnall
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引用次数: 9

摘要

我们演示了一种多速率突发模式光子计数接收器,用于在30英尺的水道上以高达10.416 Mb/s的数据速率进行海底通信。据我们所知,这是首次演示爆发模式光子计数通信。增加衰减后,λ=517 nm处的最大链路损耗为97.1 dB。在清澈的海水中,这相当于连接距离高达148米。当λ=470 nm时,在清澈海水中可实现的链接距离为450米。接收机采用基于内LDPC码和外BCH码乘积码的软判决前向纠错(FEC)。FEC支持多种码率,实现无差错性能。我们选择了一种突发模式接收器架构,以提供相对于不可预测的信道障碍的稳健性能。该接收器能够实时检测数据速率,并适应不断变化的信号和背景光水平。接收器每1.6 ms更新一次相位对准和信道估计,允许水质的快速变化以及发射器和接收器之间的运动。我们演示了动态速率检测,在所有数据速率下,信道误码率在0.2 dB以内,在所有测试码率下,软判决容量在1.82 dB以内,无错误性能。所有的信号处理都是在fpga中完成的,并且是连续实时运行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A burst-mode photon counting receiver with automatic channel estimation and bit rate detection
We demonstrate a multi-rate burst-mode photon-counting receiver for undersea communication at data rates up to 10.416 Mb/s over a 30-foot water channel. To the best of our knowledge, this is the first demonstration of burst-mode photon-counting communication. With added attenuation, the maximum link loss is 97.1 dB at λ=517 nm. In clear ocean water, this equates to link distances up to 148 meters. For λ=470 nm, the achievable link distance in clear ocean water is 450 meters. The receiver incorporates soft-decision forward error correction (FEC) based on a product code of an inner LDPC code and an outer BCH code. The FEC supports multiple code rates to achieve error-free performance. We have selected a burst-mode receiver architecture to provide robust performance with respect to unpredictable channel obstructions. The receiver is capable of on-the-fly data rate detection and adapts to changing levels of signal and background light. The receiver updates its phase alignment and channel estimates every 1.6 ms, allowing for rapid changes in water quality as well as motion between transmitter and receiver. We demonstrate on-the-fly rate detection, channel BER within 0.2 dB of theory across all data rates, and error-free performance within 1.82 dB of soft-decision capacity across all tested code rates. All signal processing is done in FPGAs and runs continuously in real time.
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