Optical communication using coherent detection with space-time coding in the presence of atmospheric turbulence

Mingbo Niu, Julian Cheng, J. Holzman
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Abstract

Space-time codes are of great interest for wireless communication systems as they can be used to improve the system performance. For optical wireless communications using coherent detection, atmospheric channels can induce fading as well as phase noise to degrade wireless link performance. In this paper, a space-time coded communication system is studied for a wireless optical link using coherent detection over atmospheric turbulence channels. An Alamouti-type space-time coded system structure is proposed when both turbulence-induced fading and phase noise from the channel and lasers are present. The error rate performance is analyzed for the proposed scheme over a wide range of turbulence conditions. Closed-form error rate expressions are derived for such systems for fast performance evaluation. In numerical case studies, the usefulness of the proposed optical wireless space-time coded system is demonstrated by a comparison to a single-input single-output optical wireless communication system.
在大气湍流中使用相干探测与空时编码的光通信
空时码在无线通信系统中具有重要的应用价值,可以提高系统的性能。对于使用相干检测的光学无线通信,大气信道会引起衰落和相位噪声,从而降低无线链路的性能。本文研究了在大气湍流信道上采用相干探测的无线光链路空时编码通信系统。提出了一种同时存在湍流衰落和信道和激光相位噪声的alamouti型空时编码系统结构。分析了该方案在大范围湍流条件下的误差率性能。为了快速评估系统的性能,导出了该系统的闭式错误率表达式。在数值算例研究中,通过与单输入单输出的光无线通信系统进行比较,证明了所提出的光无线空时编码系统的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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