Space Wireless Sensor Networks for planetary exploration: Node and network architectures

Pedro Rodrigues, André Oliveira, G. Oddi, F. Liberati, Francisco Alvarez, R. Cabás, T. Vladimirova, X. Zhai, Hongyuan Jing, M. Crosnier
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引用次数: 12

Abstract

Wireless Sensor Networks (WSNs) are made of a usually large number of nodes deployed over an area of interest in order to monitor specific phenomena. WSNs constitute a promising technology for planetary exploration, since they can be deployed in order to monitor the environmental conditions on a planet's surface, also in view of possible manned missions. This paper deals with the design of node and network architectures in a WSN targeted for planetary exploration, with a particular focus on the challenges, the driving principles and the design solutions adopted at WSN node and network level. Also, the paper introduces the basic architecture supporting data fusion at node and network level, which plays a fundamental role in order to increase overall WSN performances.
用于行星探测的空间无线传感器网络:节点和网络架构
无线传感器网络(wsn)通常由部署在感兴趣区域上的大量节点组成,以便监测特定现象。无线传感器网络是一项很有前途的行星探测技术,因为它们可以用于监测行星表面的环境条件,也可以用于可能的载人任务。本文研究了面向行星探测的WSN节点和网络架构的设计,重点讨论了WSN节点和网络层面所面临的挑战、驱动原理以及采用的设计方案。介绍了支持节点级和网络级数据融合的基本体系结构,这对提高无线传感器网络的整体性能起着至关重要的作用。
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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