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Advanced Network Planning for Time Frequency Slicing (TFS) Toward Enhanced Efficiency of the Next-Generation Terrestrial Broadcast Networks

机译:进行时频切片(TFS)的高级网络规划,以提高下一代地面广播网络的效率

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The allocation of frequencies traditionally used by terrestrial broadcasting (digital dividend) to International Mobile Telecommunication is limiting the evolution of the digital terrestrial television (DTT) networks for enhanced service offering. Next-generation DTT standards are called to provide increased capacity within the reduced spectrum. Time Frequency Slicing (TFS) has been proposed as one of the key technologies for the future DTT networks. Beyond a coverage gain due to additional frequency diversity, and a virtual capacity gain due to a more efficient statistical multiplexing, TFS also provides an increased interference immunity which may allow for a tighter frequency reuse enabling more RF channels per transmitter station, within a given spectrum. Moreover, the implementation of advanced network planning (ANP) strategies together with next-generation DTT standards may result in additional spectral efficiency gains linked to network planning. This paper evaluates the potential spectral efficiency by TFS and ANP strategies in multiple frequency networks as well as in regional and large area single frequency networks. Different network configurations have been analyzed using single polarization, the systematic use of horizontal and vertical polarizations in different stations, or the use of multiple frequency reuse patterns for different frequencies of the TFS-Mux. Results indicate high potential network spectral efficiency gains compared to the existing network deployments with DVB-T2 (Digital Video Broadcasting Terrestrial 2nd Generation).
机译:传统上,地面广播(数字红利)向国际移动电信使用的频率分配限制了地面数字电视(DTT)网络的发展,以增强服务质量。下一代DTT标准被称为在减小的频谱范围内提供更大的容量。时频切片(TFS)已被提出作为未来DTT网络的关键技术之一。除了由于额外的频率分集所带来的覆盖范围增益以及由于更有效的统计复用所带来的虚拟容量增益之外,TFS还提供了更高的抗干扰能力,这可以实现更严格的频率复用,从而在给定频谱内实现每个发射台更多的射频信道。此外,将高级网络规划(ANP)策略与下一代DTT标准一起实施可能会导致与网络规划相关的额外频谱效率提升。本文通过TFS和ANP策略评估了多频网络以及区域和大面积单频网络中的潜在频谱效率。使用单极化,在不同站点中系统地使用水平和垂直极化,或对TFS-Mux的不同频率使用多种频率复用模式,已经分析了不同的网络配置。结果表明,与使用DVB-T2(第二代数字视频广播地面广播)的现有网络部署相比,网络频谱效率得到了潜在的提高。

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