首页> 外文期刊>IEEE Transactions on Signal Processing >Optimal and Robust Beamforming for Secure Transmission in MISO Visible-Light Communication Links
【24h】

Optimal and Robust Beamforming for Secure Transmission in MISO Visible-Light Communication Links

机译:在MISO可见光通信链路中实现安全传输的最佳鲁棒波束成形

获取原文
获取原文并翻译 | 示例

摘要

This work considers secure downlink transmission in indoor multiple-input, single-output visible-light communication (VLC) links. In particular, we study the design of transmit beamformers that maximize the achievable secrecy rate subject to amplitude constraints imposed by the limited dynamic range of the light-emitting diodes (LEDs). Such constraints render the design problem nonconvex and difficult to solve. We show, however, that this nonconvex problem can be transformed into a solvable quasiconvex line search problem. We also consider the more realistic case of imperfect channel information regarding the receiver's and eavesdropper's links. We tackle the worst-case secrecy rate maximization problem, again subject to amplitude constraints. In our treatment, uncertainty in the receiver's channel is due to limited feedback, and is modeled by spherical sets. On the other hand, there is no feedback from the eavesdropper, and the transmitter shall utilize the line-of-sight channel gain equation to map the eavesdropper's nominal location and orientation into an estimate of the channel gain. Thus, we derive uncertainty sets based on inaccurate information regarding the eavesdropper's location and orientation, as well as the emission pattern of the LEDs. We also consider channel mismatches caused by the uncertain non-line-of-sight components. We provide numerical examples to demonstrate the performance gain of the optimal beamformer compared with the suboptimal schemes, and the robust beamformer compared with its nonrobust counterparts. We also evaluate the worst-case secrecy rate performance of the robust beamformer in a typical VLC scenario along with the aforementioned uncertainty sources.
机译:这项工作考虑了室内多输入,单输出可见光通信(VLC)链路中的安全下行链路传输。特别地,我们研究了发射波束形成器的设计,该设计在受到由发光二极管(LED)的有限动态范围施加的幅度限制的作用下,使可达到的保密率最大化。这样的约束使得设计问题变得不凸并且难以解决。但是,我们表明,该非凸问题可以转化为可解决的拟凸线搜索问题。我们还考虑更现实的情况,即有关接收者和窃听者链接的信道信息不完善。我们将解决最坏情况下的保密率最大化问题,该问题再次受到幅度限制。在我们的处理中,接收器通道中的不确定性是由于有限的反馈所致,并通过球面集进行建模。另一方面,窃听者没有反馈,发射机应利用视线信道增益方程将窃听者的标称位置和方向映射到信道增益的估计中。因此,我们基于有关窃听者的位置和方向以及LED的发射模式的不正确信息,得出不确定性集。我们还考虑了由不确定的非视距分量引起的信道失配。我们提供了数值示例,以证明与次优方案相比,最佳波束形成器的性能增益;与非鲁棒同类波束形成器相比,鲁棒波束形成器的性能有所提高。我们还评估了典型VLC场景中鲁棒波束形成器在最坏情况下的保密速率性能,以及上述不确定性来源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号