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Light beam allocation algorithm for eliminating interference in visible light communications

机译:消除可见光通信干扰的光束分配算法

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In this paper, we present a model of visible light communication (VLC) systems which exploit light beams for downlink transmission. A calculation method is proposed for light beam configuration (LBC) which guarantees no blind areas in the whole VLC coverage while minimizing the number of light beams. As a major contribution in this paper, a light beam allocation algorithm (LBAA) is proposed which aims to eliminate interferences between inter VLC Access Points (inter-APs) by using information of incoming data queue length and co-channel interference (CCI) conditions to decide which VLC beams are used for transmitting data to appropriate user equipment (UEs). By deploying the proposed algorithm, CCI can be eliminated because noise-effected regions and noise-free regions can be separated. Performance of the novel LBAA is analyzed, evaluated and then compared with that of another light beam allocation method using the Round-Robin algorithm. Performance results show that there are significantly improvements in term of SINR, user throughput and packet delay parameters when deploying the proposed LBAA.
机译:在本文中,我们提出了一种利用光束进行下行传输的可见光通信(VLC)系统模型。提出了一种用于光束配置(LBC)的计算方法,该方法可以确保在整个VLC覆盖范围内不存在盲区,同时将光束数量降至最低。作为本文的主要贡献,提出了一种光束分配算法(LBAA),该算法旨在通过使用传入数据队列长度和同信道干扰(CCI)条件的信息来消除VLC间接入点(inter-AP)之间的干扰决定使用哪些VLC波束将数据传输到适当的用户设备(UE)。通过部署提出的算法,可以消除CCI,因为可以将受噪声影响的区域和无噪声的区域分开。分析,评估新型LBAA的性能,然后将其与使用Round-Robin算法的另一种光束分配方法的性能进行比较。性能结果表明,在部署拟议的LBAA时,SINR,用户吞吐量和数据包延迟参数方面都得到了显着改善。

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