城市微蜂窝毫米波回程干扰感知路由与频谱分配

M. Rasekh, Dongning Guo, Upamanyu Madhow
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引用次数: 13

摘要

移动数据需求的指数级增长要求空间重用的显著增加,从而推动向具有密集部署基站的单蜂窝架构发展。为这样的网络提供回程是一个关键的挑战,因为接入链路速率很高,并且将光纤运行到可能偶然放置在灯柱和屋顶上的基站的成本和难度。因此,利用毫米波频谱的无线回程是一种有吸引力且灵活的方法,因为频谱的可用性丰富,并且可以合成高度定向、可操纵的链路。在本文中,我们制定并研究了这种毫米波回程网络上的联合资源分配和路由问题,提供了一个考虑同时活动链路相互干扰的线性规划公式。当变量的数量随着网络规模呈指数级增长时,可以减少问题的规模,使其在中等规模的网络中易于管理。简要讨论了数值结果和设计意义。
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Interference-aware routing and spectrum allocation for millimeter wave backhaul in urban picocells
The exponential growth in demand for mobile data requires significant increases in spatial reuse, motivating an evolution towards picocellular architectures with densely deployed base stations. Providing backhaul for such a network is a key challenge, because of the high access link rates, and the cost and difficulty of running optical fiber to base stations that might be opportunistically placed on lampposts and rooftops. Wireless backhaul using millimeter (mm) wave spectrum is therefore an attractive and flexible approach, given the plentiful availability of spectrum and the possibility of synthesizing highly directive, steerable links. In this paper, we formulate and investigate the problem of joint resource allocation and routing on such a mm wave backhaul network, providing a linear programming formulation that accounts for mutual interference across simultaneously active links. While the number of variables grows exponentially in network size, it is possible to prune the problem size so that it is manageable for moderately sized networks. Numerical results and design implications are briefly discussed.
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