In this paper, we propose a new subcarrier index modulation scheme for orthogonal frequency division multiplexing (OFDM), which incorporates the Reed-Solomon (RS) encoding in a visible light communication (VLC) system. In this scheme, the incoming bits are first encoded using the RS encoder, then a set of symbols in the resulting RS codeword are punctured, and the remaining symbols are modulated and mapped onto the OFDM subcarriers. This system is referred to as RS-OFDM-IM. Unlike the traditional subcarrier index modulation (SIM) schemes, the proposed scheme operates based on conveying extra information by inactivating the selected subcarriers, which facilitates simultaneous clipping noise reduction and spectral efficiency enhancement in OFDM-VLC. The bit error rate (BER) and throughput of the proposed technique is theoretically and numerically analyzed. The simulation results show the superiority of the proposed technique as compared to the coded DCO-OFDM without SIM and the classical SIM in OFDM-VLC in a system with practical clipping conditions.
翻译:在本文中,我们提议为正向频率多路分解(OFDM)制定一个新的子载体指数调制方案,将Reed-Solomon(RS)编码纳入可见光通信系统。在这个方案中,进取的位数首先使用RS编码器编码,然后在产生的RS编码词中输入一组符号,其余的符号被穿透,并绘制到OFDM子载体上。这个系统被称为RS-OFDM-IM。与传统的次载分体指数调制(SIM)方案不同,拟议的计划以通过激活选定的子载体来传递额外信息为基础,这有利于同时减少噪音和提高DM-VLC的光谱效率。拟议的技术的位误差率(BER)和通过量是理论上和数字分析的。模拟结果显示,与没有SIM的编码DCO-OFDMDM和在系统内具有实用剪裁条件的GDM-VLC的经典SIM技术相比,拟议的技术具有优势。