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Enhanced bit error rate in visible light communication: a new LED hexagonal array distribution

机译:提高可见光通信中的误码率:一种新的LED六边形阵列分布

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摘要

Due to the exponential growth of mobile devices and wireless services, a huge demand for radio frequency has increased. The presence of several frequencies causes interference between cells, which must be minimized to get the lower bit error rate (BER). For this reason, it is of great interest to use visible light communication (VLC). This paper suggests a VLC system that decreases the BER with applying a new LED distribution with a hexagonal shape using different techniques: on-off keying (OOK), quadrature amplitude modulation, and frequency reuse concept to mitigate the interference between the reused frequencies inside the hexagonal shape. The BER is measured in two scenarios line of sight (LoS) and non-line of sight for each technique that we used. The recommended values of BER in the proposed model for soft frequency reuse in case of LoS at 4, 8, and 10 dB signal to noise ratio, are 3.6 x 10(-6), 6.03 x 10(-13), and 2.66 x 10(-18), respectively.
机译:由于移动设备和无线服务的指数级增长,对射频的巨大需求有所增加。多个频率的存在会导致小区之间的干扰,必须将其降至最低才能获得较低的误码率 (BER)。因此,使用可见光通信(VLC)非常有趣。本文提出了一种VLC系统,该系统通过使用不同的技术(开关键控(OOK)、正交幅度调制和频率重用概念)应用新的六边形LED分布来降低误码率,以减轻六边形内重用频率之间的干扰。BER 是在两种情况下测量的:我们使用的每种技术的视线 (LoS) 和非视线。在信噪比为4、8和10 dB的情况下,所提出的软频率复用模型中,软频率复用的推荐值分别为3.6 x 10(-6)、6.03 x 10(-13)和2.66 x 10(-18)。

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