论文标题
通过VLC系统中的HyperChaOS提高物理层安全性
Increasing Physical Layer Security through Hyperchaos in VLC Systems
论文作者
论文摘要
与传统的射频(RF)通道相比,可见光通信(VLC)系统的安全性相对较高,这是由于视线(LOS)传播引起的。但是,它们仍然容易窃听。提出的论文解决方案已经建立在基于HyperChaos的安全措施上的现有工作,以提高窃听者的物理层安全性。四阶宁静地图用于争夺传输信号的星座图。扰动器使用键更改系统的星座符号。接收器端上的键删除接收到的数据。提出的调制方案利用较高程度的地图将数据传输隔离到单个维度,从而可以更好地争夺和同步。在接收器中使用滑动模式控制器,以主奴隶配置的形式用于两个卷轴地图的投影同步,这有助于消除接收到的数据。数据仅适用于意识到同步密钥的用户,从而提供了针对窃听器的安全性。将提出的VLC系统与基于各种指标的各种现有方法进行比较。以可接受的信号噪声比,可以提高较高的位错误率和较低的信息泄漏。
Visible Light Communication (VLC) systems have relatively higher security compared with traditional Radio Frequency (RF) channels due to line-of-sight (LOS) propagation. However, they still are susceptible to eavesdropping. The proposed solution of the papers have been built on existing work on hyperchaos-based security measure to increase physical layer security from eavesdroppers. A fourth-order Henon map is used to scramble the constellation diagrams of the transmitted signals. The scramblers change the constellation symbol of the system using a key. That key on the receiver side de-scrambles the received data. The presented modulation scheme takes advantage of a higher degree of the map to isolate the data transmission to a single dimension, allowing for better scrambling and synchronization. A sliding mode controller is used at the receiver in a master-slave configuration for projective synchronization of the two Henon maps, which helps de-scramble the received data. The data is only isolated for the users aware of the key for synchronization, providing security against eavesdroppers. The proposed VLC system is compared against various existing approaches based on various metrics. An improved Bit Error Rate and a lower information leakage are achieved for a variety of modulation schemes at an acceptable Signal-to-Noise Ratio.