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An Optimal Power-Throughput Tradeoff Study for MIMO Fading Ad-Hoc Networks

机译:MIMO衰落Ad-Hoc网络的最优功率-吞吐量折衷研究

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In this paper, we study optimal tradeoffs of achievable throughput versus consumed power in wireless ad-hoc networks formed by a collection of multiple antenna nodes. Relying on adaptive modulation and/or dynamic channel coding rate allocation techniques for multiple antenna systems, we examine the maximization of throughput under power constraints as well as the minimization of transmission power under throughput constraints. In our examination, we also consider the impacts of enforcing quality of service requirements expressed in the form of channel coding block loss constraints. In order to properly model temporally correlated loss observed in fading wireless channels, we propose the use of finite-state Markov chains. Details of fading statistics of signal-to-interference-noise ratio, an important indicator of transmission quality, are presented. Further, we objectively inspect complexity versus accuracy tradeoff of solving our proposed optimization problems at a global as oppose to a local topology level. Our numerical simulations profile and compare the performance of a variety of scenarios for a number of sample network topologies.
机译:在本文中,我们研究了由多个天线节点组成的无线自组织网络中可实现吞吐量与功耗之间的最佳权衡。依靠多天线系统的自适应调制和/或动态信道编码速率分配技术,我们研究了功率约束下的吞吐量最大化以及吞吐量约束下的传输功率最小化。在我们的检查中,我们还考虑了以信道编码块丢失约束形式表示的强制执行服务质量要求的影响。为了正确地建模在衰落的无线信道中观察到的时间相关的损耗,我们建议使用有限状态马尔可夫链。介绍了信噪比衰落统计的详细信息,信噪比是传输质量的重要指标。此外,我们客观地检查了复杂性与准确性之间的权衡,以解决我们提出的针对局部拓扑级别的全局优化问题。我们的数值模拟描述并比较了许多示例网络拓扑的各种方案的性能。

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