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Resource Allocation for Visible Light Communication using Stochastic Geometry

机译:使用随机几何的可见光通信资源分配

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A theoretical closed form approximation for the asymptotic bit error rate (BER) is obtained and used for estimating the cost of the visible light communication (VLC) system in terms of the number of LEDs as well as the power required for satisfying the system performance requirements. This is done by modeling the VLC using stochastic geometry, where the random source array is generated using a binomial point process (BPP) with a heuristic source power allocation for obtaining average uniform illumination. BER analysis is done for both circular and square BPPs. The theoretical BER results are verified through simulations. The results obtained in the paper are extremely useful for designing practical VLC systems from traditional indoor lighting.
机译:获得了渐近误码率(BER)的理论上闭合形式的近似值,并将其用于根据LED的数量以及满足系统性能要求所需的功率来估算可见光通信(VLC)系统的成本。这是通过使用随机几何模型对VLC建模来完成的,其中,使用二项式点过程(BPP)生成随机光源阵列,并使用启发式光源功率分配以获得平均均匀照明。对圆形和方形BPP均进行了BER分析。通过仿真验证了理论BER结果。本文获得的结果对于从传统室内照明设计实用的VLC系统非常有用。

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