In this work, we investigate the transmission sum rate as well as the secrecy sum rate of indoor visible light communication (VLC) networks for mobile devices with the power domain non-orthogonal multiple access (NOMA) transmission, where multiple legitimate users are equipped with photodiodes (PDs). We introduce a body blockage model of the legitimate users as well as the eavesdropper to focus on the case where the communications from transmitting light-emitting diodes (LEDs) to receiving devices are blocked by the bodies of receiving users. Furthermore, in order to improve the secrecy without any knowledge of the channel state information (CSI) of the eavesdropper, a novel LED arrangement is introduced to reduce the overlapping area covered by LED units supporting different users. We also propose two LED operation strategies, called simple and smart LED linking, and evaluate their performance against the conventional broadcasting in terms of transmission sum rate and secrecy sum rate. Through computer simulations, the superiority of our proposed strategies is demonstrated.
翻译:本文研究了采用功率域非正交多址传输(NOMA)的移动设备室内可见光通信(VLC)网络的传输速率以及保密速率,其中多个合法用户配备光电二极管(PD)。我们引入了合法用户和窃听器的人体遮挡模型,重点考虑了发送LED到接收设备的通信被接收用户的身体阻挡的情况。此外,为了提高保密性,无需了解窃听器的通道状态信息(CSI),引入了一种新的LED布局以减少支持不同用户的LED单元覆盖的重叠区域。我们还提出了两种LED操作策略,称为简易和智能LED链接,并通过传输速率和保密速率对比了它们与传统广播的性能。通过计算机模拟,证明了我们提出策略的优越性。