首页> 外文期刊>Applied optics >Displacement damage in bit error ratio performance of on-off keying, pulse position modulation, differential phase shift keying, and homodyne binary phase-shift keying-based optical intersatellite communication system
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Displacement damage in bit error ratio performance of on-off keying, pulse position modulation, differential phase shift keying, and homodyne binary phase-shift keying-based optical intersatellite communication system

机译:基于开关键控,脉冲位置调制,差分相移键控和基于零差二进制相移键控的星际光通信系统的误码率性能中的位移损伤

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Displacement damage (DD) effect induced bit error ratio (BER) performance degradations in on-off keying (OOK), pulse position modulation (PPM), differential phase-shift keying (DPSK), and homodyne binary phase shift keying (BPSK) based systems were simulated and discussed under 1 MeV neutron irradiation to a total fluence of 1 x 10(12) n/cm(2) in this paper. Degradation of main optoelectronic devices included in communication systems were analyzed on the basis of existing experimental data. The system BER degradation was subsequently simulated and the variations of BER with different neutron irradiation location were also achieved. The result shows that DD on an Er-doped fiber amplifier (EDFA) is the dominant cause of system degradation, and a BPSK-based system performs better than the other three systems against DD. In order to improve radiation hardness of communication systems against DD, protection and enhancement of EDFA are required, and the use of a homodyne BPSK modulation scheme is a considered choice. (C) 2016 Optical Society of America
机译:基于开关键控(OOK),脉冲位置调制(PPM),差分相移键控(DPSK)和零差二进制相移键控(BPSK)的位移损坏(DD)效应引起的误码率(BER)性能下降本文在1 MeV中子辐照下对系统进行了仿真和讨论,总通量为1 x 10(12)n / cm(2)。在现有实验数据的基础上,分析了通信系统中包括的主要光电器件的性能下降。随后模拟了系统的BER退化,并获得了BER在不同中子辐照位置下的变化。结果表明,掺Er光纤放大器(EDFA)上的DD是导致系统性能下降的主要原因,而基于BPSK的系统在对抗DD方面的性能优于其他三个系统。为了提高通信系统抗DD的辐射硬度,需要对EDFA进行保护和增强,并且考虑使用零差BPSK调制方案。 (C)2016美国眼镜学会

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