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首页> 外文期刊>Journal of circuits, systems and computers >A Review on Self-Healing and Self-Organizing Techniques for Wireless Sensor Networks
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A Review on Self-Healing and Self-Organizing Techniques for Wireless Sensor Networks

机译:关于无线传感器网络的自我修复和自我组织技术综述

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摘要

We present the state-of-the-art related to self-organizing and self-healing techniques. On the one hand, self-organization is the nodes' ability to construct a network topology without any human intervention and any previous topology knowledge. On the other hand, self-healing is the network's ability to recover from failures by using hardware and software redundancies. By using both techniques, Wireless Sensor Networks (WSNs) can be deployed in unattended and harsh environments where on-site technical service is unfeasible. In the last few years, a large amount of work has been done in these two research areas, but these different techniques occur at different layers and with no general classification or effort to consolidate them. One of the contributions of this paper is the consolidation of the most significant and relevant mechanisms in these two areas, and additionally, we made an effort to organize and classify them. In this review, we explain in detail the two stages of self-organization, namely topology construction and management. Moreover, we present a comprehensive study of the four steps in a self-healing technique, namely, information collection, fault detection, fault classification and fault recovery. By introducing relevant work, comparative tables, and future trends, we provide the reader with a complete picture of the state-of-the-art. Another contribution is the proposal of a unified framework that employs self-organizing and self-healing mechanisms to achieve a fault-tolerant network.
机译:我们提出了与自我组织和自我修复技术相关的最先进的。一方面,自组织是节点在没有任何人为干预的情况下构建网络拓扑的能力和任何先前的拓扑知识。另一方面,自我修复是网络通过使用硬件和软件冗余从故障恢复的能力。通过使用这两种技术,无线传感器网络(WSN)可以在无人看管的和恶劣环境中部署,在现场技术服务不可行。在过去的几年里,这两个研究领域已经完成了大量的工作,但这些不同的技术发生在不同的层次,没有一般分类或努力巩固它们。本文的贡献之一是整合这两个领域最重要和最相关的机制,另外,我们努力组织和分类。在这篇综述中,我们详细介绍了自组织的两个阶段,即拓扑结构和管理。此外,我们对自我修复技术的四个步骤进行了全面的研究,即信息收集,故障检测,故障分类和故障恢复。通过引入相关的工作,比较表和未来趋势,我们为读者提供了完整的最先进的图片。另一项贡献是统一框架的提议,该框架采用自我组织和自我修复机制来实现容错网络。

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