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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Hybrid pulse position modulation and binary phase shift keying subcarrier intensity modulation for free space optics in a weak and saturated turbulence channel
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Hybrid pulse position modulation and binary phase shift keying subcarrier intensity modulation for free space optics in a weak and saturated turbulence channel

机译:弱饱和湍流信道中自由空间光学器件的混合脉冲位置调制和二进制相移键控子载波强度调制

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摘要

In this paper a hybrid modulation scheme based on pulse position modulation (PPM) and binary phase shift keying subcarrier intensity modulation (BPSK-SIM) schemes for free-space optical communications is proposed. The analytical bit error rate (BER) performance is investigated in weak and saturated turbulence channels and results are verified with the simulation data. Results show that performance of PPM-BPSK-SIM is superior to BPSK-SIM in all turbulence regimes; however, it outperforms 2-PPM for the turbulence variance sigma_(1)~(2) > 0.2. PPM-BPSK-SIM offers a signal-to-noise ratio (SNR) gain of 50 dB in the saturation regime compared to BPSK at a BER of 10~(-6). The SNR gain in comparison to PPM improves as the strength of the turbulence level increases.
机译:本文提出了一种基于脉冲位置调制(PPM)和二进制相移键控子载波强度调制(BPSK-SIM)方案的自由空间光通信混合调制方案。在弱湍流和饱和湍流通道中研究了解析误码率(BER)性能,并用仿真数据验证了结果。结果表明,在所有湍流状态下,PPM-BPSK-SIM的性能均优于BPSK-SIM。但是,在湍流方差sigma_(1)〜(2)> 0.2时,其性能优于2-PPM。与BER为10〜(-6)时的BPSK相比,PPM-BPSK-SIM在饱和状态下的信噪比(SNR)增益为50 dB。与湍流水平相比,SNR增益随PPM的提高而提高。

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