Hu Shan-Shan, Chi Xue-Fen, Ji Feng-Lei, Chen Shao-Qi, Hu Gao-Yang
Opt Lett. 2024 May 15;49(10):2757-2760. doi: 10.1364/OL.524542.
Optical camera communication (OCC) has attracted increased attention for its inherent security advantage. However, there still exists the risk of eavesdropping on the broadcasting channel of OCC. To achieve confidential communication, we propose the confidentiality-interference dual light-emitting diode (LED) communication (CIDLC) scheme at the transmitter (TX) and elimination of interference (EI) scheme at the receiver (RX). Meanwhile, interference signals refer to the bit shift of confidential signals. Further, we propose the two-dimensional pilot-aided channel estimation (2D-PACE) scheme to enhance the reliability of multiple-input multiple-output (MIMO) OCC. Experiment results validate the effectiveness of our schemes, which guarantee confidentiality while performing well at a 2 m non-line-of-sight (NLOS) distance. Finally, the communication-illumination integration OCC is constructed via the energy equalization coding (EEC) scheme.
光学相机通信(OCC)因其固有的安全优势而受到越来越多的关注。然而,在OCC的广播信道上仍存在被窃听的风险。为了实现保密通信,我们提出了发射端(TX)的保密干扰双发光二极管(LED)通信(CIDLC)方案和接收端(RX)的干扰消除(EI)方案。同时,干扰信号指的是保密信号的比特移位。此外,我们提出了二维导频辅助信道估计(2D-PACE)方案,以提高多输入多输出(MIMO)OCC的可靠性。实验结果验证了我们方案的有效性,这些方案在2米非视距(NLOS)距离下既能保证保密性又能表现良好。最后,通过能量均衡编码(EEC)方案构建了通信照明一体化OCC。