Throughput Optimization in Wireless Networks with Multi-Packet Reception and Directional Antennas

J. Crichigno, Minyou Wu, W. Shu
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引用次数: 5

Abstract

Recent advances in the physical layer have enabled the simultaneous reception of multiple packets by a node in wireless networks. In this paper, we present a generalized model for the throughput optimization problem in wireless networks that support multi-packet reception (MPR) capability. Our model directly accounts for nodes with multiple transmitter antennas, which can be directional or omni-directional. We divide the problem into two subproblems: routing and scheduling. Due to the hardness of the scheduling subproblem, we propose a polynomial time heuristic based on a combination of greedy and linear programming paradigms. We use the devised scheme to study the impact of several design parameters on the performance of MPR-capable networks, including the number of interfaces, the beamwidth and the receiver range of the antennas. Numerical results demonstrate the effectiveness and the generality of the scheme, and permit us to draw valuable conclusions about MPR-capable networks.
多包接收和定向天线无线网络的吞吐量优化
物理层的最新进展使无线网络中的一个节点能够同时接收多个数据包。本文提出了支持多包接收(MPR)能力的无线网络吞吐量优化问题的一个广义模型。我们的模型直接考虑了具有多个发射天线的节点,可以是定向的,也可以是全向的。我们把这个问题分成两个子问题:路由和调度。由于调度子问题的难度较大,我们提出了一种基于贪心规划和线性规划相结合的多项式时间启发式算法。我们使用设计的方案研究了几个设计参数对mpr网络性能的影响,包括接口数量、波束宽度和天线的接收范围。数值结果证明了该方案的有效性和通用性,并允许我们对具有mpr功能的网络得出有价值的结论。
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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