Li Baolong, Feng Simeng, Xu Wei
Opt Express. 2020 Apr 27;28(9):12621-12637. doi: 10.1364/OE.392127.
In optical wireless communication (OWC), the superimposed optical orthogonal frequency division multiplexing (O-OFDM), such as layered asymmetrically clipped O-OFDM (LACO-OFDM), can improve spectrum efficiency by appropriately combining multiple O-OFDM signals for simultaneous transmission. However, it suffers from increased receiver complexity and latency. Therefore, a novel architecture of hybrid pulse-amplitude-modulated discrete multitone modulation (HPAM-DMT) is proposed in this paper to support a spectrum-efficiency OWC link. In HPAM-DMT, a PAM-DMT signal is carefully designed by using the real parts of subcarriers and is then superimposed on the classic PAM-DMT signal for simultaneous transmission, which fully exploits the spectrum in terms of subcarriers. Moreover, thanks to the well-designed aritecture of the two superimposed PAM-DMT signals, the proposed HPAM-DMT achieves the same spectrum efficiency as the LACO-OFDM, with much lower complexity and latency. Notable improvement of the bit-error rate (BER) performance is observed for the proposed HPAM-DMT compared to LACO-OFDM under the corruption of the transmitter nonlinearity. Moreover, HPAM-DMT achieves a relatively higher power efficiency than conventional O-OFDM schemes, which makes it a competitive O-OFDM scheme for IM/DD-based OWC.
在光无线通信(OWC)中,诸如分层非对称限幅光正交频分复用(LACO-OFDM)之类的叠加光正交频分复用(O-OFDM),可以通过适当地组合多个O-OFDM信号进行同时传输来提高频谱效率。然而,它存在接收机复杂度和延迟增加的问题。因此,本文提出了一种新型的混合脉冲幅度调制离散多音调制(HPAM-DMT)架构,以支持具有频谱效率的OWC链路。在HPAM-DMT中,通过使用子载波的实部精心设计一个PAM-DMT信号,然后将其叠加在经典的PAM-DMT信号上进行同时传输,这在子载波方面充分利用了频谱。此外,得益于两个叠加的PAM-DMT信号的精心设计架构,所提出的HPAM-DMT实现了与LACO-OFDM相同的频谱效率,但复杂度和延迟要低得多。与LACO-OFDM相比,在所提出的HPAM-DMT中,在发射机非线性的影响下观察到误码率(BER)性能有显著改善。此外,HPAM-DMT实现了比传统O-OFDM方案相对更高的功率效率,这使其成为基于强度调制/直接检测(IM/DD)的OWC中有竞争力的O-OFDM方案。