Throughput scaling laws for dual-radio random wireless networks

Jinjing Jiang, John Z. Yu, Cong Shen
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Abstract

In this paper, we consider the throughput scaling laws for the dual-radio random wireless networks under the well-known protocol model[4]. The dual-radio network is one kind of heterogeneous wireless network, where some among the n nodes in the network are equipped with a secondary wireless interface, which has stronger connectivity and larger data transmission capability than the first normal wireless interface. The dual-radio networks provide a tradeoff and optimization between the hybrid wireless networks with wired infrastructure assistance (e.g., cellular networks) and the pure ad hoc wireless networks (e.g., sensor networks). Our analysis leads to improved results with a much finer lower bound on the throughput compared with the one shown in [1] using the max-flow min-cut theorem. The main results provide the throughput scaling laws, which bridge over the gap of throughput between the ad hoc networks and the hybrid networks. It is shown that the expected throughput increment of the dual-radio networks over the ad hoc networks by the additional wireless interfaces is mainly determined and dominated by the the capacity of the per pair dual-radio nodes, which form the congestion points.
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双无线电随机无线网络的吞吐量缩放规律
在本文中,我们考虑了在众所周知的协议模型[4]下双无线电随机无线网络的吞吐量缩放规律。双无线网络是一种异构无线网络,在网络的n个节点中,有一些节点配备了一个二次无线接口,它比第一个普通无线接口具有更强的连通性和更大的数据传输能力。双无线网络提供了有线基础设施辅助的混合无线网络(例如,蜂窝网络)和纯自组织无线网络(例如,传感器网络)之间的权衡和优化。与使用最大流量最小切定理的[1]中所示的结果相比,我们的分析得到了更精细的吞吐量下界的改进结果。主要结果提供了吞吐量缩放规律,它弥补了自组织网络和混合网络之间的吞吐量差距。研究表明,通过增加无线接口,双无线电网络在自组织网络上的预期吞吐量增量主要由构成拥塞点的每对双无线电节点的容量决定和支配。
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