Impact of power control on the performance of ad hoc wireless networks

A. Behzad, I. Rubin
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引用次数: 66

Abstract

An ad hoc wireless network with n nodes and m source-destination pairs, using a scheduling based medium access control (MAC) protocol such as time division multiple access (TDMA), and a routing mechanism that may be unicast or multicast based, is considered. Under a given nodal transmit power vector, we define the source-destination throughput vector to be achievable if there exists an associated temporal (based on the channel sharing MAC protocol) and spatial (based on the underlying routing mechanism) joint scheduling-routing scheme that yields the throughput vector. In this paper, we analyze and investigate the effect of nodal transmit power vector on the maximum (or supreme) level of a general (real-valued) function of the source-destination throughput levels. We represent the latter supreme level attained under power vector. We also derive a linear programming (LP) formulation for obtaining the exact solution to the optimization problem that yields the throughput capacity of finite ad hoc wireless networks. Our LP based performance evaluation results identify the magnitude of capacity upgrade that can be realized for networks with random topologies and traffic patterns.
功率控制对自组织无线网络性能的影响
考虑了一个具有n个节点和m个源-目的对的自组织无线网络,该网络使用基于调度的介质访问控制(MAC)协议,如时分多址(TDMA),以及基于单播或多播的路由机制。在给定的节点传输功率矢量下,如果存在产生吞吐量矢量的相关时间(基于信道共享MAC协议)和空间(基于底层路由机制)联合调度路由方案,则可以实现源-目的地吞吐量矢量。在本文中,我们分析和研究了节点传输功率矢量对源-目的吞吐量水平的一般(实值)函数的最大(或最高)水平的影响。我们代表在功率矢量下达到的后一种最高水平。我们还导出了一个线性规划(LP)公式,用于获得产生有限自组织无线网络吞吐量的优化问题的精确解。我们基于LP的性能评估结果确定了具有随机拓扑和流量模式的网络可以实现的容量升级幅度。
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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