随着广播电视行业移动无线终端用户数量的激增,人们对广播信号实时传输提出了更高的要求,其中利用前沿技术解决广域信号的深度覆盖问题已成为研究热点。基于此,研究5G-多播广播服务(Multicast and Broadcast Service,MBS)技术、地面广...随着广播电视行业移动无线终端用户数量的激增,人们对广播信号实时传输提出了更高的要求,其中利用前沿技术解决广域信号的深度覆盖问题已成为研究热点。基于此,研究5G-多播广播服务(Multicast and Broadcast Service,MBS)技术、地面广播传输技术,提出一种基于5G-MBS+地面广播技术的信号传输方案,并给出具体的实施流程和评估方法。仿真实验结果表明,应用该方案可提高频谱使用效率和广播信号覆盖率,具有较高的应用价值。展开更多
ON May 30, BBC for the first time used EE’s recently launched 5G network for live broadcasts. As the camera zoomed in on the Huawei equipment, the excited reporter Rory Cellan-Jones told the audience that it was the ...ON May 30, BBC for the first time used EE’s recently launched 5G network for live broadcasts. As the camera zoomed in on the Huawei equipment, the excited reporter Rory Cellan-Jones told the audience that it was the apparatus that made the first 5G broadcast in the U.K. possible. Posts by British users on social media that day showed that the 5G network speed reached as high as 980 Mbps.展开更多
文摘随着广播电视行业移动无线终端用户数量的激增,人们对广播信号实时传输提出了更高的要求,其中利用前沿技术解决广域信号的深度覆盖问题已成为研究热点。基于此,研究5G-多播广播服务(Multicast and Broadcast Service,MBS)技术、地面广播传输技术,提出一种基于5G-MBS+地面广播技术的信号传输方案,并给出具体的实施流程和评估方法。仿真实验结果表明,应用该方案可提高频谱使用效率和广播信号覆盖率,具有较高的应用价值。
文摘ON May 30, BBC for the first time used EE’s recently launched 5G network for live broadcasts. As the camera zoomed in on the Huawei equipment, the excited reporter Rory Cellan-Jones told the audience that it was the apparatus that made the first 5G broadcast in the U.K. possible. Posts by British users on social media that day showed that the 5G network speed reached as high as 980 Mbps.