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Towards Throughput and Delay Optimal Routing for Wireless Ad-Hoc Networks

机译:用于吞吐量和延迟无线ad-hoc网络的最佳路由

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The design of routing protocols for wireless ad-hoc networks is guided by the dual requirements of throughput optimality and minimum delay. Lately, there has been a movement from the traditional routing approach, which identifies a best path to the destination before transmission and routes all the packets through it, to opportunistic approaches which make routing decisions adaptively based on actual transmission outcomes. We compare the stable rate region of both the approaches and find, interestingly, that opportunistic routing schemes do not always support a larger stable-rate region than traditional routing protocols. Backpressure based schemes are known to be throughput optimal but compromise on delay performance instead. We study the behavior of various schemes and propose a routing policy that considers both the goals of throughput optimality and minimizing expected delay in its design.
机译:无线ad-hoc网络的路由协议的设计由吞吐量最优性和最小延迟的双重要求为指导。最近,传统的路由方法是一种动作,它在传输之前识别目的地的最佳路径,并通过它将所有数据包路由到机会方法,该方法基于实际传输结果自适应地进行路由决策。我们比较了方法的稳定率区域,有趣的是,有趣的是,机会的路由方案并不总是支持比传统的路由协议更大的稳定率区域。已知基于背压的方案是吞吐量最佳,但泄露延迟性能。我们研究了各种方案的行为,并提出了一种路由政策,该策略考虑吞吐量最优性的目标,并最大限度地减少其设计中的预期延迟。

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