Dear editor,Visible light communication (VLC) has raised great interests since it supplements the unlicensed spectrum resource for ultra-high data rate transmission [1]. In order to resist time dispersion and guarantee the real-valued and non-negative constraint in VLC channel, DC-biased optical orthogonal frequency-division multiplexing (DCO-OFDM) and asymmetrically clipped optical OFDM (ACO-OFDM) techniques have been utilized in VLC systems [2]. Unlike DCO-OFDM, which requires high DC bias [3], ACO-OFDM enjoys an advantage of high power efficiency and wide light emitting diodes (LED) dynamic region.
在宽带地面数字广播领域,单频网(single frequency network,SFN)由于具有更高的频谱效率而逐渐替代多频网(multi-frequency network,MFN)成为实际系统布网的首选。但随着移动业务的增长、城市楼宇环境的日趋复杂,传统SFN内容单一、交叠区域信号衰减剧烈的弊端也限制着它的进一步应用。新近提出的云传输SFN由于简单的组网规范、灵活的传输体制以及更高的频率复用率而引起广泛的重视。云传输网络负的信号接收门限保证了两基站重叠区域强回波信道下系统的性能。该文针对云传输体制部署时面临的多基站重叠的挑战,提出一种基于Walsh序列扩频的编码方案,并分析了交叠区域以及叠加多业务后的系统性能,仿真表明:该方案在抗多径和多业务传输方面符合云传输广播网的组网要求,并有实现简单、兼容性好的特点,可同时满足下一代数字广播网高清传输与支持移动的需求,具有良好的应用前景。