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On the performance of time-space opportunistic routing in multihop Mobile Ad Hoc Networks

机译:多跳移动自组织网络中时空机会路由的性能

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In classical routing strategies for multihop mobile wireless networks packets are routed on a pre-defined route usually obtained by a shortest path routing protocol. In opportunistic routing schemes, for each packet and each hop, the next relay is found by dynamically selecting the node that captures the packet transmission and which is the nearest to the destination. Such a scheme allows each packet to take advantage of the local pattern of transmissions and fadings at any slot and at any hop. The aim of this paper is to quantify and optimize the potential performance gains of such opportunistic routing strategies compared with classical routing schemes. The analysis is conducted under the following lower layer assumptions: the Medium Access (MAC) layer is a spatial version of Aloha which has been shown to scale well for large multihop networks; the capture of a packet by some receiver is determined by the Signal over Interference and Noise Ratio (SINR) experienced by the receiver. The paper contains a detailed simulation study which shows that such time-space opportunistic schemes very significantly outperform classical routing schemes. It also contains a mathematical study where we show how to optimally tune the MAC parameters so as to minimize the average number of time slots required to carry a typical packet from origin to destination on long paths. We show that this optimization is independent of network density.
机译:在用于多跳移动无线网络的经典路由策略中,将数据包路由到通常由最短路径路由协议获得的预定义路由上。在机会路由方案中,对于每个数据包和每个跃点,通过动态选择捕获数据包传输并且最接近目的地的节点来找到下一个中​​继。这样的方案允许每个分组在任何时隙和任何跳处利用传输和衰落的本地模式。本文的目的是与传统的路由方案相比,量化和优化这种机会性路由策略的潜在性能收益。该分析是在以下较低层的假设下进行的:介质访问(MAC)层是Aloha的空间版本,已被证明可以很好地用于大型多跳网络。某些接收器对数据包的捕获取决于接收器所经历的信号干扰和噪声比(SINR)。本文包含详细的仿真研究,结果表明此类时空机会主义方案明显优于经典路由方案。它还包含一个数学研究,其中我们展示了如何最佳地调整MAC参数,以最大程度地减少在长途路径上将典型数据包从始发地传送到目的地所需要的平均时隙数。我们表明,这种优化与网络密度无关。

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