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Dual-pulse pulse position modulation (DPPM) for deep-space optical communications: Performance and practicality analysis

机译:用于深空光通信的双脉冲脉冲位置调制(DPPM):性能和实用性分析

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Due to its simplicity and robustness against wave-front distortion, pulse position modulation (PPM) with photon counting detector has been seriously considered for long-haul optical wireless systems. This paper evaluates the dual-pulse case and compares it with the conventional single-pulse case. Analytical expressions for symbol error rate and bit error rate are first derived and numerically evaluated, for the strong, negative-exponential turbulent atmosphere. The capacity of the turbulent FSO channel modeled as a Z-channel is evaluated, and throughput, bandwidth efficiency and energy efficiency of Dual-pulse and single-pulse PPM are subsequently assessed. It is shown that, under a set of practical constraints including pulse width and pulse repetition frequency (PRF), dual-pulse PPM enables a better channel utilization and hence a higher throughput than its single-pulse counterpart. This result is new and different from the previous idealistic studies that showed multi-pulse PPM provided no essential information-theoretic gains over single-pulse PPM.
机译:由于其简单性和抗波前失真的鲁棒性,带有光子计数检测器的脉冲位置调制(PPM)已被认真考虑用于长距离光学无线系统。本文评估了双脉冲情况,并将其与常规单脉冲情况进行了比较。首先针对强负指数湍流大气,导出符号错误率和误码率的解析表达式,并对其进行数值评估。评估了建模为Z通道的湍流FSO通道的容量,随后评估了双脉冲和单脉冲PPM的吞吐量,带宽效率和能量效率。结果表明,在包括脉冲宽度和脉冲重复频率(PRF)在内的一系列实际约束条件下,双脉冲PPM与单脉冲PPM相比,能够更好地利用信道,从而提高吞吐量。该结果是新的,并且与以前的理想主义研究不同,后者表明多脉冲PPM不能提供比单脉冲PPM更大的信息理论收益。

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