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首页> 外文期刊>Wireless Communications, IEEE Transactions on >Cross-Layer Rate Control in Wireless Networks with Lossy Links: Leaky-Pipe Flow, Effective Network Utility Maximization and Hop-by-Hop Algorithms
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Cross-Layer Rate Control in Wireless Networks with Lossy Links: Leaky-Pipe Flow, Effective Network Utility Maximization and Hop-by-Hop Algorithms

机译:有损链路的无线网络中的跨层速率控制:管道泄漏流量,有效的网络实用程序最大化和逐跳算法

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摘要

We take a cross-layer design approach to study rate control in multihop wireless networks. Due to the lossy nature of wireless links, the data rate of a given flow becomes smaller and smaller along its routing path. As a result, the data rate received successfully at the destination node (the effective rate) is typically lower than the transmission rate at the source node (the injection rate). In light of this observation, we treat each flow as a ¿leaky-pipe" flow and introduce the notion of ¿effective utility" associated with the effective rate (not the injection rate) of each flow. We then explore rate control through effective network utility maximization (ENUM) in this study. Two network models are studied in this paper: 1) ENUM with link outage constraints with a maximum error rate at each link; 2) ENUM with path outage constraints where there exists an end-to-end outage requirement for each flow. For both models, we explicitly take into account the ¿thinning" feature of data flows and devise distributed hop-by-hop rate control algorithms accordingly. Our numerical examples corroborate that higher effective network utility and better fairness can be achieved by the ENUM algorithms than the standard NUM.
机译:我们采用跨层设计方法来研究多跳无线网络中的速率控制。由于无线链路的损耗特性,给定流的数据速率沿其路由路径变得越来越小。结果,在目标节点成功接收的数据速率(有效速率)通常低于源节点的传输速率(注入速率)。根据此观察,我们将每个流视为“泄漏管”流,并引入与每个流的有效速率(而非注入速率)相关的“有效效用”的概念。然后,在本研究中,我们将通过有效的网络效用最大化(ENUM)探索速率控制。本文研究了两种网络模型:1)具有链路中断约束的ENUM,每个链路的最大错误率; 2)具有路径中断约束的ENUM,其中每个流都存在端到端中断要求。对于这两个模型,我们明确考虑了数据流的“细化”特性,并据此设计了分布式逐跳速率控制算法,我们的数值示例证实了ENUM算法可以实现更高的有效网络利用率和更好的公平性。而不是标准NUM。

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