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Achieving Optimal Throughput in Cooperative Wireless Multihop Networks With Rate Adaptation and Continuous Power Control

机译:具有速率自适应和连续功率控制的协作无线多跳网络中的最佳吞吐量

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摘要

This work is an offline study to characterize the performance of cooperative relaying in interference-limited multihop networks, where nodes are equipped with multi-rate and continuous power control capabilities. We formulate a cross-layer flow-based framework to obtain the achievable throughput rates by jointly optimizing the parameters for multi-path routing, scheduling, rates, transmit powers, and selection of cooperative nodes. This framework is generic in that it is not restricted to any particular cooperative combining technique or type of network architecture. To take continuous power control into account, we introduce a non-trivial power allocation subproblem while keeping the main cross-layer framework as a linear program. We solve the problem optimally to obtain the max–min throughput for the case when cooperation is based on the distributed Alamouti code and networks have a mesh-like topology. We derive a number of practical engineering insights based on our numerical optimal results obtained for small-to-medium-sized random networks. In particular, we establish that the use of cooperative relaying in a small-to-medium-sized random mesh network often does not yield significant performance gains in throughput and connectivity even when multi-rate and continuous power control capabilities are available at the nodes.
机译:这项工作是一项离线研究,目的是表征在受干扰限制的多跳网络中协作中继的性能,在该网络中,节点具有多速率和连续功率控制功能。我们制定了一个基于跨层流的框架,通过联合优化多路径路由,调度,速率,发射功率和协作节点选择的参数来获得可达到的吞吐率。该框架是通用的,因为它不限于任何特定的协作组合技术或网络体系结构的类型。为了考虑连续功率控制,我们引入了一个非平凡的功率分配子问题,同时将主要的跨层框架保持为线性程序。当合作基于分布式Alamouti代码且网络具有网状拓扑时,我们可以最优地解决该问题以获得最大/最小吞吐量。我们基于为中小型随机网络获得的数值最优结果,得出了许多实用的工程见解。特别是,我们确定,即使在节点上具有多速率和连续功率控制功能,在中小型随机网格网络中使用协作中继通常也不会在吞吐量和连接性方面获得显着的性能提升。

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