Han Dahai, Liu Yile, Zhang Kai, Luo Pengfei, Zhang Min
State Key Laboratory of Information Photonics and Optical Communications (Beijing University of Posts and Telecommunications), P.O. Box 128,10 Xitucheng Road, Haidian District, Beijing 100876, China.
Opt Express. 2012 Jul 2;20(14):15833-42. doi: 10.1364/OE.20.015833.
Diversity reception technology is introduced into ultraviolet communication area in this article with theory analysis and practical experiment. The idea of diversity reception was known as a critical effective method in wireless communication area that improves the Gain significantly especially for the multi-scattering channel. A theoretical modeling and simulation method are proposed to depict the principle and feasibility of diversity reception adopted in UV communication. Besides, an experimental test-bed using ultraviolet LED and dual receiver of photomultiplier tube is setup to characterize the effects of diversity receiving in non-line-of-sight (NLOS) ultraviolet communication system. The experiment results are compared with the theoretical ones to verify the accuracy of theoretical modeling and the effect of diversity reception. Equal gain combining (EGC) method was adopted as the diversity mechanism in this paper. The research results of theory and experiment provide insight into the channel characteristics and achievable capabilities of ultraviolet communication system with diversity receiving method.
本文通过理论分析和实际实验,将分集接收技术引入紫外通信领域。分集接收的理念在无线通信领域被认为是一种关键的有效方法,特别是对于多散射信道,它能显著提高增益。提出了一种理论建模和仿真方法来描述紫外通信中采用的分集接收原理和可行性。此外,搭建了一个使用紫外发光二极管和光电倍增管双接收器的实验测试平台,以表征非视距(NLOS)紫外通信系统中分集接收的效果。将实验结果与理论结果进行比较,以验证理论建模的准确性和分集接收的效果。本文采用等增益合并(EGC)方法作为分集机制。理论和实验研究结果为采用分集接收方法的紫外通信系统的信道特性和可实现能力提供了深入了解。