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Performance analysis of gradual multi-pulse pulse-position modulation in deep-space optical communications

机译:深空光通信中渐进多脉冲脉冲位置调制的性能分析

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摘要

A gradual multi-pulse pulse-position modulation (gradual MPPM) scheme is proposed as a new modulation scheme to improve both the performance and bandwidth-utilization efficiency of the conventional optical multi-pulse pulse-position modulation (MPPM) scheme in deep-space optical communications. Whereas in the conventional MPPM scheme, a fixed number of optical pulses is transmitted in every signal block, a variable number of pulses are transmitted in the proposed scheme. Information is represented by different combinations of the positions of these pulses. The transmission characteristics, bandwidth utilization, and power requirements for the proposed scheme are studied in this paper. Several performance measures are derived and compared with those of the conventional MPPM scheme in deep-space optical communications. Our results reveal that, at the same average power, the proposed gradual MPPM scheme achieves much lower levels of symbol-error rates than those of the ordinary MPPM scheme, whereas, at the same peak power levels, the ordinary MPPM outperforms the gradual scheme. Also, in terms of bandwidth-utilization efficiency, the proposed modulation scheme achieves higher efficiency than the ordinary MPPM by allowing many more symbols to be transmitted per frame.
机译:提出了一种渐进多脉冲脉冲位置调制(渐进式MPPM)方案作为一种新的调制方案,以提高常规光学深空空间多脉冲脉冲位置调制(MPPM)方案的性能和带宽利用效率。光通信。在传统的MPPM方案中,在每个信号块中发送固定数量的光脉冲,而在建议的方案中发送可变数量的脉冲。信息由这些脉冲的位置的不同组合表示。本文研究了该方案的传输特性,带宽利用率和功率要求。在深空光通信中,导出了几种性能指标并将其与常规MPPM方案的性能指标进行了比较。我们的结果表明,在相同的平均功率下,拟议的渐进式MPPM方案实现的符号错误率水平比普通MPPM方案低得多,而在相同的峰值功率水平下,普通MPPM的性能优于渐进式方案。另外,就带宽利用效率而言,所提出的调制方案通过允许每帧发送更多的符号来实现比普通MPPM更高的效率。

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