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Utilizing Link Characterization for Improving the Performance of Aerial Wireless Sensor Networks

机译:利用链路特性改善空中无线传感器网络的性能

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摘要

Characterization of communication links in Aerial Wireless Sensor Networks (AWSN) is of paramount importance for achieving acceptable network performance. Protocols based on an arbitrary link performance threshold may exhibit inconsistent behavior due to link behavior not considered during the design stage. It is thus necessary to account for factors that affect the link performance in real deployments. This paper details observations from an extensive set of experiments designed to characterize the behavior of communication links in AWSN. We employ the widely used TelosB sensor platform for these experiments. The experimental results highlight the fact that apart from the usual outdoor environmental factors affecting the link performance, two major contributors to the link degradation in AWSN are the antenna orientation, and the multi-path fading effect due to ground reflections. Based on these observations, we propose a Link Aware Protocol for AWSN (LAAWN) that takes into account the effect of these potential sources of performance degradation. This paper details the design and performance evaluation of our proposed LAAWN protocol. We evaluated the LAAWN protocol in two real-world use cases namely delay-tolerant and real-time AWSN. The simulation results show that on average, LAAWN improves the overall network performance by reducing the percentage of dropped packets from about 34% to less than 4% for an AWSN that requires real-time data transfer.
机译:空中无线传感器网络(AWSN)中通信链路的表征对于实现可接受的网络性能至关重要。由于在设计阶段未考虑链路行为,基于任意链路性能阈值的协议可能会出现不一致的行为。因此,有必要考虑影响实际部署中链路性能的因素。本文详细介绍了一系列旨在表征AWSN中通信链接行为的实验。我们将广泛使用的TelosB传感器平台用于这些实验。实验结果突显了这样一个事实,除了影响链路性能的常见室外环境因素外,导致天线网络定向和天线反射以及地面反射引起的多径衰落效应是造成AWSN链路性能下降的两个主要因素。基于这些观察,我们提出了一种适用于AWSN的链接感知协议(LAAWN),该协议考虑了这些性能下降潜在来源的影响。本文详细介绍了我们提出的LAAWN协议的设计和性能评估。我们在两个实际的用例中评估了LAAWN协议,即延迟容忍和实时AWSN。仿真结果表明,对于需要实时数据传输的AWSN,LAAWN可以通过平均将丢弃的数据包的百分比从约34%降低到不足4%,从而提高整体网络性能。

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