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首页> 外文期刊>International Journal of Distributed Sensor Networks >Link Prediction and Route Selection Based on Channel State Detection in UASNs
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Link Prediction and Route Selection Based on Channel State Detection in UASNs

机译:基于信道状态检测的UASN链路预测和路由选择

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摘要

In Underwater Acoustic Sensor Networks (UASNs), data route is often disrupted by link interruption which will further lead to incorrect data transmission due to high propagation delay, Doppler effect, and the vulnerability of water environment in acoustic channel. So how to correctly transmit data when there are interrupted links on the data path is just the issue Delay Tolerant Networks (DTNs) aim to solve. In this paper, we propose a model to predict link interruption and route interruption in UASNs by the historical link information and channel state obtained by periodic detection. A method of decomposing and recomposing routes hop by hop in order to optimize route reselection is also presented. Moreover, we present a back-up route maintenance scheme to keep back-up routes with fresh information. In case of single route, we advance the idea to utilize the periodicity of environmental changes to help predict link interruption. In the simulation, we make comparisons on node energy consumption, end-to-end delay as well as bit error rate with and without link prediction. It can be derived that the network performance is significantly improved with our mechanism, so that our mechanism is effective and efficient while guaranteeing reliable data transmission.
机译:在水下声传感器网络(UASN)中,数据路由通常会因链路中断而中断,由于高传播延迟,多普勒效应以及声信道中水环境的脆弱性,这将进一步导致错误的数据传输。因此,当数据路径上的链路​​中断时,如何正确传输数据只是延迟容忍网络(DTN)旨在解决的问题。在本文中,我们提出了一个模型,该模型可通过定期检测获得的历史链接信息和信道状态来预测UASN中的链接中断和路由中断。还提出了一种逐跳分解和重组路由以优化路由重选的方法。此外,我们提出了一种备用路由维护方案,以使备用路由保持最新信息。如果是单条路线,我们提出利用环境变化的周期性来帮助预测链路中断的想法。在仿真中,我们对有无链路预测的节点能耗,端到端延迟以及误码率进行了比较。可以得出,通过我们的机制,网络性能得到了显着改善,因此我们的机制既有效又高效,同时又保证了可靠的数据传输。

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