大气光学通道系统猛禽代码

Linyan Liu, M. Safari, S. Hranilovic
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引用次数: 2

摘要

本文基于不同天气条件下1.87 km地面自由空间光通信链路的实验数据,研究了一种基于Raptor编码的速率自适应自由空间光通信系统。使用猛禽编码,无线通信系统可以适应由大气湍流和/或恶劣天气条件引起的信道增益波动。为了减轻发送方和接收方之间同步的负担,消息被分组并按顺序发送。对于每个数据包,增加一个循环冗余码(CRC),从而形成一个有效的数据包擦除通道(PEC)。利用实验数据和开-关键(OOK)调制,评估了速率自适应FSO系统在不同信令速率下的性能。在恶劣的天气条件下,无编码的FSO系统无法有效运行,而速率自适应技术在晴朗和雨天条件下提供可靠的FSO通信。
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Systematic raptor codes for atmospheric optical channels
In this paper, a rate-adaptive free-space optical (FSO) communication system using systematic Raptor codes is investigated based on experimental data measured over a 1.87 km terrestrial FSO link in different weather conditions. Using Raptor codes, the FSO communication system can adapt to the channel gain fluctuations caused by atmospheric turbulence and/or adverse weather conditions. To alleviate the burden of synchronizing between transmitter and receiver, messages are packetized and sent in sequence. For each packet, a cyclic-redundancy code (CRC) is added resulting in an effective packet erasure channel (PEC). Using experimental data and on-off-keying (OOK) modulation, the performance of the rate-adaptive FSO system is evaluated at different signaling rates. While an uncoded FSO system fails to efficiently operate during adverse weather conditions, the rate-adaptive technique provides reliable FSO communication under clear and rainy weather conditions.
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