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Thresholding-Based Optimal Detection of Wireless Optical Signals

机译:基于阈值的无线光信号最佳检测

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摘要

The receiver design for a high-speed free-space (wireless) optics (FSO) signal is necessarily highly complex when channel state information (CSI) is not available. Currently, although most approaches provide high detection performance in terms of bit error, receiver design is difficult to implement. This paper proposes two practical thresholding-based detection schemes, which offer significant improvement to receiver throughput on a computational load basis when CSI is not available. The first is based on a simple maximum likelihood (ML) function where the bit error rate (BER) is the same as conventional symbol-by-symbol detection. This method, however, causes a loss of BER performance. The second uses the aid of pilot-symbol-assisted modulation (PSAM) to modify the ML function when channel coefficients are temporally correlated. While numerical analysis based on this method shows that the BER performance in a log-normally distributed fading channel is very close to detection achieved with perfect CSI, the receiver suffers from increased complexity. If random processes for fading and noise are assumed as stationary and given that the detection threshold is quickly calculated and applied during a given period, such complexity of PSAM-based and symbol-by-symbol detection methods can be reduced.
机译:当通道状态信息(CSI)不可用时,用于高速自由空间(无线)光学(FSO)信号的接收器设计必然非常复杂。当前,尽管大多数方法在误码方面提供了很高的检测性能,但是接收机设计却难以实现。本文提出了两种实用的基于阈值的检测方案,当CSI不可用时,它们在计算负载的基础上显着提高了接收机的吞吐量。第一种基于简单的最大似然(ML)函数,其中误码率(BER)与常规逐符号检测相同。但是,这种方法会导致BER性能下降。当信道系数在时间上相关时,第二种方法利用导频符号辅助调制(PSAM)来修改ML函数。尽管基于此方法的数值分析表明,对数正态分布衰落信道中的BER性能非常接近采用完美CSI所实现的检测,但接收机的复杂性却不断增加。如果假定衰落和噪声的随机过程是平稳的,并且在给定的时间段内可以快速计算并应用检测阈值,则可以降低基于PSAM和逐个符号的检测方法的复杂性。

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