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Achievable data rate of coordinated multi-point transmission for visible light communications

机译:可见光通信协调多点传输的可实现数据速率

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This paper studies the sum data rate that a Visible Light Communication (VLC) system with multiple users can achieve when phosphor-converted white LED panels are used to provide illumination and communication simultaneously. Three different transmission schemes based on Asymmetrically Clipped Optical Orthogonal Frequency Division Multiplexing (ACO-OFDM) are considered to allocate the communication resources in each transmission point: Frequency Reuse (FR), Joint Transmission Coordinated Multi-Point (JT-CoMP), and a Hybrid combination of them. Since phosphor-converted white LEDs have a larger modulation bandwidth for blue optical wavelengths rather than green-yellow-red ones, the performance of each transmission method is also evaluated using a visible and/or blue light optical filter in front of the Photodetector (PD). When the transmission points apply FR, strong inter-cell interference results in high variability of the achievable data rate at different locations. On the other hand, when JT-CoMP is applied, a more homogeneous data rate coverage is achieved, reducing the peak data rate in the inner parts of the cells but improving notably the data rate in cell-edge areas.
机译:本文研究了具有多个用户的可见光通信(VLC)系统可以实现当磷光体转换的白色LED面板同时提供照明和通信时实现的可见光通信(VLC)系统的总和数据速率。基于非对称剪裁光正交频分复用(ACO-OFDM)的三种不同的传输方案被认为是在每个传输点中分配通信资源:频率重用(FR),联合传输协调多点(JT-COMP),以及一个混合组合。由于磷光体转换的白光LED具有较大的蓝光波长的调制带宽而不是绿色黄色红色,因此还使用光电探测器前方的可见和/或蓝光滤光器评估每个传输方法的性能(PD )。当传输点施加FR时,强的小区间干扰会导致不同位置可实现的数据速率的高可变性。另一方面,当应用JT-COMP时,实现了更均匀的数据速率覆盖,降低了细胞内部中的峰值数据速率,但值得注意地提高了细胞边缘区域中的数据速率。

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