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Planning Large Single Frequency Networks for DVB-T2

机译:为DVB-T2规划大型单频网络

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The final coverage and associated performance of a single frequency networks (SFNs) is a joint result of the properties of all transmitters in the SFN. Due to the large number of parameters involved in the process, finding the right configuration is quite complex. The purpose of this paper is to find optimal SFN network configurations for second generation digital terrestrial broadcast system (DVB-T2). Offering more options of system parameters than its predecessor DVB-T, DVB-T2 allows large SFN networks. However, self-interference in SFNs gives rise to restrictions on the maximum intertransmitter distance and the network size. In order to make optimum use of the spectrum, the same frequency can be reused over different geographical areas—beyond the reuse distance to avoid co-channel interference. In this paper, a methodology based on theoretical network models is proposed. A number of network architectures and network reference models are considered here for different reception modes in order to study the effects of key planning factors on the maximum SFN size and minimum reuse distance. The results show that maximum bitrate, network size, and reuse distance are closely related. In addition, it has been found that the guard interval is not the only limiting parameter and that its impact strongly depends on the rest of DVB-T2 mode parameters as well as on the network characteristics (equivalent radiated power, effective height, and intertransmitter distance). Assuming that the carrier to noise ratio requirements are in the vicinity of 20 dB and bitrates over 30 Mb/s, it has been found that the network can be as large as km (delivering 39.2 Mb/s) or even km (delivering 37.5 Mb/s). The reuse distance will also have a complex dependency on the DVB-T2 mode and especially the netwo- k parameters, ranging from below 100 to 300 km.
机译:单频网络(SFN)的最终覆盖范围和相关性能是SFN中所有发射机属性的共同结果。由于该过程涉及大量参数,因此找到正确的配置非常复杂。本文的目的是为第二代数字地面广播系统(DVB-T2)找到最佳的SFN网络配置。 DVB-T2提供了比其前身DVB-T更多的系统参数选项,从而允许大型SFN网络。但是,SFN中的自干扰会导致对最大发射机间距离和网络大小的限制。为了最有效地利用频谱,可以在不同的地理区域内重用相同的频率-超出重用距离可以避免同频道干扰。本文提出了一种基于理论网络模型的方法。为了研究关键规划因素对最大SFN大小和最小重用距离的影响,此处针对不同的接收模式考虑了许多网络体系结构和网络参考模型。结果表明,最大比特率,网络大小和重用距离密切相关。此外,已经发现保护间隔不是唯一的限制参数,其影响在很大程度上取决于其余DVB-T2模式参数以及网络特性(等效辐射功率,有效高度和发射机间距离) )。假设载噪比要求在20 dB附近,并且比特率超过30 Mb / s,则发现网络的大小可以达到km(交付39.2 Mb / s)甚至km(交付37.5 Mb)。 / s)。重用距离也将对DVB-T2模式(尤其是netwo-k参数)具有复杂的依赖性,范围从100到300 km。

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