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Energy efficient line-of-sight millimeter wave small cell backhaul: 60, 70, 80 or 140 GHz?

机译:节能线毫米波小电池回程:60,70,80或140 GHz?

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Spectrum scarcity together with high capacity demands make the use of millimeter wave (mmWave) frequencies an interesting alternative for next generation, i.e., fifth generation (5G), networks. Although mmWave is expected to play a key role for both access network and backhaul (BH), its initial use in the BH network seems more straight-forward. This stems from the fact that, in the BH case, its deployment is less challenging due to the fixed locations of BH transceivers. Still, provided that mmWave spectrum consists of several subbands, each one with different characteristics and thus different deployment constraints (e.g., channel bandwidth, maximum transmission power), a comparison is required in order to gain a better insight into the potentials of each solution. To that end, in this paper, the main mmWave candidate frequency bands are compared in terms of range, throughput and energy consumption. In our results, the bandwidth availability, the maximum transmission power as well as the antenna gains of each BH technology are taken into account, as defined by the Federal Communications Commission. The results are also compared with current industry-oriented state-of-the-art transceiver characteristics in order to gain further insights into the maximum achievable gains of each subband.
机译:频谱稀缺以及高容量需求,利用毫米波(MMWAVE)频率是下一代的有趣替代方案,即第五代(5G),网络。虽然预计MMWAVE对访问网络和回程(BH)发挥关键作用,但它在BH网络中的初始使用似乎更直接。这源于该事实中,由于BH收发器的固定位置,其部署在其部署不太具挑战性。此外,只要MMWAVE频谱由若干子带组成,每个子带具有不同的特征,因此不同的部署约束(例如,信道带宽,最大传输功率),以获得更好地深入了解每个解决方案的电位。为此,在本文中,在范围,吞吐量和能量消耗方面比较主MMWAVE候选频带。在我们的结果中,根据联邦通信委员会所定义的,考虑到带宽可用性,最大传输功率以及每个BH技术的天线增益。结果也与当前的行业为导向的最先进的收发器特征进行了比较,以便进一步了解每个子带的最大可实现的收益。

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