Zhang Guowu, Zhang Junwei, Hong Xuezhi, He Sailing
Opt Express. 2017 Feb 20;25(4):3780-3794. doi: 10.1364/OE.25.003780.
A novel frequency domain nonlinear compensation method, FD-NC, is proposed for orthogonal frequency division multiplexing (OFDM) based visible light communication (VLC) system. By tackling the memory nonlinear impairments from light emitting diodes (LEDs) in the frequency domain rather than in the time domain, the proposed method has much lower computational complexity than the conventional time domain Volterra nonlinear compensation method (TD-NC). Both theoretical derivation and experimental investigation of the proposed method in OFDM based VLC systems with four types of commercial LEDs are presented. The results of experiments show that the proposed low-complexity FD-NC method with a moderate truncation factor achieves a performance comparable to that of the TD-NC. The application of FD-NC method in the bit-power loading OFDM VLC system is also experimentally demonstrated. Compared with the linear equalization case, at a bit error rate (BER) of 3.8 × 10 (a), the transmission distance of a 960 Mbps VLC system can be extended from 0.7 m to 1.8 m by the FD-NC, and (b) the achievable system capacity can be enhanced by 18.7%36.5% for transmission distance in the range of 0.5 m2 m with the FD-NC. The complexity analysis shows that the required number of real-valued multiplications (RNRM) of the FD-NC is independent of linear or nonlinear memory length. The reduction of RNRM achieved by the FD-NC over the TD-NC becomes more profound for a larger nonlinear memory length or a smaller truncation factor.
针对基于正交频分复用(OFDM)的可见光通信(VLC)系统,提出了一种新颖的频域非线性补偿方法FD-NC。通过在频域而非时域处理发光二极管(LED)的记忆非线性损伤,该方法的计算复杂度远低于传统的时域Volterra非线性补偿方法(TD-NC)。本文给出了该方法在基于OFDM的VLC系统中使用四种商用LED的理论推导和实验研究。实验结果表明,具有适度截断因子的低复杂度FD-NC方法实现了与TD-NC相当的性能。还通过实验证明了FD-NC方法在比特功率加载OFDM VLC系统中的应用。与线性均衡情况相比,在误码率(BER)为3.8×10时,对于960 Mbps的VLC系统,(a)通过FD-NC,传输距离可从0.7 m扩展到1.8 m;(b)对于0.5 m至2 m范围内的传输距离,使用FD-NC可使可实现的系统容量提高18.7%至36.5%。复杂度分析表明,FD-NC所需的实值乘法次数(RNRM)与线性或非线性记忆长度无关。对于更大的非线性记忆长度或更小的截断因子,FD-NC相对于TD-NC实现的RNRM减少更为显著。