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首页> 外文期刊>ACM Transactions on Modeling and Computer Simulation >Joint Congestion Control and Distributed Scheduling for Throughput Guarantees in Wireless Networks
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Joint Congestion Control and Distributed Scheduling for Throughput Guarantees in Wireless Networks

机译:无线网络中吞吐量保证的联合拥塞控制和分布式调度

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We consider the problem of throughput-optimal cross-layer design of wireless networks. We propose a joint congestion control and scheduling algorithm that achieves a fraction l/dI(G) of the capacity region, where d_I(G) depends on certain structural properties of the underlying connectivity graph G of the wireless network, and also on the type of interference constraints. For a wide range of wireless networks, d_I(G) can be upper bounded by a constant, independent of the number of nodes in the network. The scheduling element of our algorithm is the maximal scheduling policy. Although this scheduling policy has been considered in several previous works, the challenges underlying its practical implementation in a fully distributed manner while accounting for necessary message exchanges have not been addressed in the literature. In this article, we propose two algorithms for the distributed implementation of the maximal scheduling policy accounting for message exchanges, and analytically show that they still can achieve the performance guarantee under the 1-hop and 2-hop interference models. We also evaluate the performance of our cross-layer solutions in more realistic network settings with imperfect synchronization under the Signal-to-Interference-Plus-Noise Ratio (SINR) interference model, and compare with the standard layered approaches such as TCP over IEEE 802.11b DCF networks.
机译:我们考虑无线网络的吞吐量优化跨层设计问题。我们提出一种联合拥塞控制和调度算法,该算法可实现容量区域的分数l / dI(G),其中d_I(G)取决于无线网络基础连接图G的某些结构属性,并且还取决于类型干扰约束。对于广泛的无线网络,d_I(G)可以由一个常量上限,而与网络中的节点数无关。我们算法的调度元素是最大调度策略。尽管在先前的一些工作中已经考虑了这种调度策略,但是在文献中并没有解决在以必要的消息交换进行考虑的同时以完全分布式的方式实际实施该调度策略所面临的挑战。在本文中,我们提出了两种用于消息交换的最大调度策略的分布式实现的算法,并分析表明它们仍然可以在1跳和2跳干扰模型下实现性能保证。我们还评估了跨层解决方案在更现实的网络设置中的性能,这些环境在信号与干扰加噪声比(SINR)干扰模型下具有不完美的同步,并与标准分层方法(例如基于IEEE 802.11的TCP)进行了比较b DCF网络。

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