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The impact of location errors on achievable rates in OFDM-based multi-user visible light communication systems

机译:位置误差对基于OFDM的多用户可见光通信系统中可达到的速率的影响

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Visible light communication (VLC) is a communication technology in which data is transferred by modulating the visible light intensity. VLC signals degrade significantly due to the absence of the line of sight (LOS) between the transmitter and the receiver. Hence, any errors in determining the location of the users and equivalently the distance between the nodes can result in performance degradation. In this paper, we investigate the impact of location errors on performance of a VLC network exploiting power control. We consider the achievable rate region of two VLC communication pairs as the performance criterion. The system employs optical orthogonal frequency division multiplexing (O-OFDM) with power control. The power control algorithm exploits the receivers locations information to determine the distances between the transmitters and the receivers, which will be used to find the optimal transmission powers. We consider the case of random errors in the location estimation process modeled with a general error probability density function. In calculating the achievable rates of the communication pairs, the optical signal clipping effect is taken into consideration that results from the physical limitations at the transmitters. The numerical results show the effects of the system parameters including the location error variance, the desired illumination power and the relative positions of the receivers relative to the light emitting diodes (LED) transmitters on the achievable rate region.
机译:可见光通信(VLC)是一种通信技术,其中,通过调制可见光强度来传输数据。由于发射器和接收器之间不存在视线(LOS),VLC信号的质量大大降低。因此,在确定用户位置以及节点之间的距离相等时的任何错误都可能导致性能下降。在本文中,我们研究了位置误差对利用功率控制的VLC网络性能的影响。我们将两个VLC通信对可达到的速率区域视为性能标准。该系统采用具有功率控制功能的光学正交频分复用(O-OFDM)。功率控制算法利用接收器的位置信息来确定发射器与接收器之间的距离,该距离将用于查找最佳发射功率。我们考虑了使用一般误差概率密度函数建模的位置估计过程中随机误差的情况。在计算通信对的可达到速率时,要考虑到光信号削波效应,该效应是由于发射机的物理限制而引起的。数值结果显示了系统参数的影响,包括位置误差方差,所需的照明功率以及接收器相对于可发射速率区域上的发光二极管(LED)发射器的相对位置。

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