Receiver architecture for on-off-keying free-space optical communications with channel estimation in the presence of residual spatial tracking error

IF 1.1 4区 工程技术 Q4 OPTICS Optical Engineering Pub Date : 2023-10-12 DOI:10.1117/1.oe.63.4.041203
Kamran Kiasaleh
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Abstract

In this work, a receiver architecture for the detention of on-off-keying (OOK) signals using adaptive signal estimation and threshold setting for free-space optical communications is investigated. It is assumed that the received signal is impaired by channel fading, modeled using Málaga (M) distribution, and an imperfect pointing acquisition. In OOK communications, knowledge of the received signal is required to set the optimum receiver threshold. To that end, a linear estimation technique is utilized to estimate the combined impact of the residual pointing error and channel fading. The performance of the resulting receiver is evaluated and is compared with those of a receiver in which the channel and pointing impairments are ignored and with a receiver in which the channel and pointing impacts are replaced by the statistical averages of those impairments. It is shown that, for reasonable system parameters, the proposed receiver offers a significant improvement in performance in terms of the overall bit error rate (BER) when compared with its alternatives. For a scenario in which a significant pointing error is present, it is observed that channel estimation does not offer a benefit in terms of the overall BER.
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存在剩余空间跟踪误差时信道估计的开断键自由空间光通信接收机结构
在这项工作中,研究了一种用于自由空间光通信的自适应信号估计和阈值设置的开关键(OOK)信号延迟的接收器结构。假设接收到的信号受到信道衰落的损害,使用Málaga (M)分布建模,并且指向采集不完美。在OOK通信中,需要了解接收到的信号来设置最佳的接收器阈值。为此,利用线性估计技术对残差指向误差和信道衰落的综合影响进行估计。对结果接收器的性能进行评估,并与忽略信道和指向损害的接收器以及用这些损害的统计平均值代替信道和指向影响的接收器进行比较。结果表明,在合理的系统参数下,与其他方案相比,所提出的接收机在总体误码率(BER)方面提供了显着的性能改进。对于存在明显指向错误的场景,可以观察到信道估计在总体BER方面没有提供任何好处。
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来源期刊
Optical Engineering
Optical Engineering 工程技术-光学
CiteScore
2.70
自引率
7.70%
发文量
393
审稿时长
2.6 months
期刊介绍: Optical Engineering publishes peer-reviewed papers reporting on research and development in optical science and engineering and the practical applications of known optical science, engineering, and technology.
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