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Signal to interference plus noise ratio improvement of a multi‐cell indoor visible light communication system through optimal parameter selection complying lighting constraints

机译:通过最佳参数选择符合照明约束,信号与干扰加多细胞室内可见光通信系统的噪声比的改善

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摘要

Abstract To achieve improved communication and illumination performances of a multi‐cell indoor visible light communication system, the selection of transmitter configuration and receiver's field of view (FoV) play a critical role. Based on multiple criteria decision modeling, a design‐centric methodology is proposed in this paper to determine the optimal transmitter configuration and receiver's FoV under lighting constraints. These optimal parameter selections are instrumental to obtain a highly uncorrelated channel, thus significantly mitigate both co‐channel interference from the neighboring transmitter and intersymbol interference due to multipath reflection. The implication for the optimum selection is explored using two communication (P‾sig,P‾intf) and two lighting (Eavg, UO) performance indicating metrics. For a typical indoor scenario, three different transmitter arrangements with varying half‐power beam‐width are considered as alternatives. Furthermore, the signal to interference plus noise ratio (SINR) is tested over the communication floor (CF) by a simple receiver structure with a single photodiode. Incorporating the optimal transmitter configuration and receiver's FoV, 36.13 dB average SINR and 345 lx average horizontal illuminance is achieved. Analytically obtained SINR is also validated using a commercial ray tracing optical software for different positions over the CF. In comparison with the state of the art non‐optimal and sub‐optimal solutions, the proposed scheme, without real‐time computational complexity exhibits noteworthy improvement in SINR performance at expense of a trivial drop in overall uniformity of horizontal illuminance.
机译:摘要以改善多细胞室内可见光通信系统的沟通和照明性能,选择发射器配置和接收器视野(FOV)起着至关重要的作用。基于多个标准决策模型,在本文中提出了一种设计中心方法,以确定在照明约束下的最佳发射机配置和接收器的FOV。这些最佳参数选择对获得高度不相关的通道具有重要作用,因此显着减轻了由于多径反射而引起的相邻发射器和Intersymbol干扰的串联干扰。使用两个通信(P‾SIG,P‾INTF)和两个指示指标的指示指示指标的指示性能(EAVG,UO)性能来探索最佳选择的影响。对于典型的室内场景,将三种不同的发射器排列带有不同的一半能力梁宽,被认为是替代方案。此外,通过具有单个光电二极管的简单接收器结构在通信地板(CF)上测试了信号与干扰加噪声比(SINR)。结合了最佳发射器配置和接收器的FOV,36.13 dB平均SINR和345 LX平均水平照明。分析获得的SINR还使用商用射线跟踪的光学软件验证了CF的不同位置。与最佳和亚最佳解决方案的最佳状态相比,没有实时计算复杂性的提议方案表现出sinr表现的值得注意的改善,牺牲了水平照射的总体均匀性的微不足道。

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