A SURVEY OF WIRELESS SENSOR NETWORK ARCHITECTURES

A. Davis, Hwa Chang
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引用次数: 22

Abstract

A wireless sensor network (WSN) consists of spatially distributed autonomous sensors that cooperatively monitor physical or environmental conditions, such as temperature, sound, vibration, pressure, motion, or pollutants, at different locations. Recent advances in low-power highly-integrated electronics, advances in micro-electro-mechanical systems (MEMS), rapid growth in the type and quality of available sensors, and progress in communication have allowed WSNs to achieve an unprecedented growth in commercial, industrial and military applications. In order to better understand WSNs, we look at their network architectures. In this survey, we classify existing WSN architectures into specific groups based on WSN behaviour and data flow characteristics. Existing architectures are described and presented along with their advantages and disadvantages. The existing architectures are also evaluated in terms of most common WSN performance parameters such as network lifetime, latency, reliability, quality of service (QoS), fidelity, scalability, modularity, and ease of deployment.
无线传感器网络体系结构综述
无线传感器网络(WSN)由空间分布的自主传感器组成,这些传感器协同监测不同位置的物理或环境条件,如温度、声音、振动、压力、运动或污染物。低功耗高集成电子学的最新进展,微机电系统(MEMS)的进步,可用传感器类型和质量的快速增长以及通信的进步使WSNs在商业,工业和军事应用中实现了前所未有的增长。为了更好地理解wsn,我们来看看它们的网络架构。在这项调查中,我们根据WSN的行为和数据流特征将现有的WSN架构分类为特定的组。对现有的体系结构及其优缺点进行了描述和介绍。现有的体系结构还根据最常见的WSN性能参数进行评估,例如网络生命周期、延迟、可靠性、服务质量(QoS)、保真度、可伸缩性、模块化和易于部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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