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Optical Communication Using Subcarrier Intensity Modulation in Strong Atmospheric Turbulence

机译:强大气湍流中使用副载波强度调制的光通信

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摘要

Error rate performance of subcarrier intensity modulations is analyzed for optical wireless communications over strong atmospheric turbulence channels. We study the error rate of a subcarrier intensity modulated optical wireless communication system employing $M$ -ary phase-shift keying, differential phase-shift keying, and noncoherent frequency-shift keying. Both $K$ -distributed turbulence channel (strong) and negative exponential turbulence channel (saturated) are considered. Closed-form error rate expressions are derived using a series expansion of the modified Bessel function. Furthermore, the outage probability expressions are obtained for subcarrier intensity modulated optical wireless communication systems over the $K$-distributed turbulence and the negative exponential channels. Asymptotic error rate analysis and truncation error analysis are also presented. Our asymptotic analysis shows that differential phase-shift keying suffers a constant signal-to-noise ratio performance loss of 3.92 dB with respect to binary phase-shift keying under strong atmospheric turbulence conditions. The numerical results demonstrate that our series solutions are efficient and highly accurate.
机译:为了在强大气湍流信道上进行光学无线通信,分析了子载波强度调制的误码率性能。我们研究了采用$ M $ -ary相移键控,差分相移键控和非相干频移键控的副载波强度调制光无线通信系统的误码率。同时考虑了$ K $分布的湍流通道(强)和负指数湍流通道(饱和)。使用修正的Bessel函数的级数展开,可以得出闭合格式的错误率表达式。此外,获得了在分布有$ K $的湍流和负指数信道上的副载波强度调制的光无线通信系统的中断概率表达式。还给出了渐近误差率分析和截断误差分析。我们的渐近分析表明,相对于在强大气湍流条件下的二进制相移键控,差分相移键控遭受的恒定信噪比性能损失为3.92 dB。数值结果表明,我们的级数解是高效且高度准确的。

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