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Localized Techniques for Broadcasting in Wireless Sensor Networks

机译:无线传感器网络中的广播本地化技术

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In this paper we tackle the problem of designing simple, localized, low energy consuming, reliable protocols for one-to-all communication in large scale wireless sensor networks. Our first proposed technique, called the Irrigator protocol, relies on the idea to first build a sparse overlay network, and then flood over it. The overlay network is set up by means of a simple, distributed, localized probabilistic protocol and spans all the sensor nodes with high probability. Based on the algorithmic ideas of the Irrigator protocol we then develop a second protocol, dubbed Fireworks, with similar performance that does not require any overlay network to be set up in advance. Asymptotic analytical results are provided which assess the reliability of the Irrigator and Fireworks techniques. The theoretical analysis of the proposed protocols is complemented and validated by a (simulation based) comparative performance evaluation that assesses several advantages of our new protocols with respect to gossiping and simple flooding. Differently from previous studies, we analyze and demonstrate the performance of our protocols for two different node distributions: The typical uniform distribution and a newly defined "hill" distribution, here introduced to capture some of the important and more realistic aspects of
机译:在本文中,我们解决了为大规模无线传感器网络中的一对一通信设计简单,本地化,低能耗,可靠的协议的问题。我们首先提出的技术称为Irrigator协议,其依据是首先构建一个稀疏的覆盖网络,然后对其进行泛洪的想法。覆盖网络是通过简单的分布式本地化概率协议建立的,并以很高的概率跨越所有传感器节点。然后,根据Irrigator协议的算法思想,我们开发了第二个协议,称为Fireworks,具有类似的性能,不需要事先设置任何覆盖网络。提供了渐近分析结果,用于评估灌溉技术和烟花技术的可靠性。拟议协议的理论分析得到了(基于模拟的)比较性能评估的补充和验证,该评估评估了我们的新协议在闲聊和简单泛洪方面的若干优势。与以前的研究不同,我们分析并证明了我们的协议在两种不同节点分布上的性能:典型的均匀分布和新定义的“山坡”分布,此处介绍这些特征以捕获一些重要且更实际的方面

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