Designing wireless radio access networks for third generation cellular networks

T. Bu, M. Chan, R. Ramjee
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引用次数: 27

Abstract

In third generation (3G) cellular networks, base stations are connected to base station controllers by point-to-point (usually T1/E1) links. However, today's T1/E1 based buck haul network is not a good match for next generation wireless networks because symmetric T1s is not an efficient way to carry bursty and asymmetric data traffic. In this paper, we propose designing an IEEE 802.16-based wireless radio access network to carry the traffic from the base station to the radio network controller. 802.16 has several characteristics that make it a better match for 3G radio access networks including its support for time division duplex mode that supports asymmetry efficiently. In this paper, we tackle the following question; given a layout of base stations and base station controllers, how do we design the topology of the 802.16 radio access network connecting the base stations to the base station controller that minimizes the number of 802.16 links used while meeting the expected demands of traffic from/to the base stations? We make three contributions: we first show that finding the optimal solution to the problem is NP-hard. We then provide heuristics that perform close to the optimal solution. Finally, we address the reliability issue of failure of 802.16 links or nodes by designing algorithms to create topologies that can handle single failures effectively.
第三代蜂窝网络无线接入网络设计
在第三代(3G)蜂窝网络中,基站通过点对点(通常是T1/E1)链路连接到基站控制器。然而,今天基于T1/E1的buck haul网络并不适合下一代无线网络,因为对称的T1并不是承载突发和非对称数据流量的有效方式。在本文中,我们提出设计一个基于IEEE 802.16的无线接入网来承载从基站到无线网络控制器的流量。802.16有几个特点,使它更好地匹配3G无线接入网络,包括它支持时分双工模式,有效地支持不对称。在本文中,我们解决以下问题;给定基站和基站控制器的布局,我们如何设计连接基站和基站控制器的802.16无线接入网络的拓扑结构,以尽量减少使用的802.16链路数量,同时满足进出基站的预期流量需求?我们做出了三个贡献:我们首先证明了找到问题的最优解是np困难的。然后我们提供执行接近最优解决方案的启发式方法。最后,我们通过设计算法来创建可以有效处理单个故障的拓扑,从而解决802.16链路或节点故障的可靠性问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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