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The study of survive hierarchical topology control scenario design based on wireless sensor networks technical

机译:基于无线传感器网络技术的生存分层拓扑控制场景设计研究

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WSN as a new information gathering and processing techniques, with the low-power communications technology, sensor technology, MEMS technology, and the rapid development of embedded systems technology, in today's society of information technology, economic, and social progress increasingly play more important role. Any information technology development to a certain stage, will produce and survivability, security and other related issues, in view of the special nature WSN, which can be the basis of survival is survivable topology control study, it is hoped the network topology designed to extend the network life and early death in the individual nodes continue to provide critical services, when fault/intrusion tolerance ability to reach the limit, and can be returned to work with renewable technologies. In this paper, energy saving and renewable technologies for WSN topology were studied and analyzed, put forward their own solutions. This paper summarizes the survivability of WSN. In any unfavorable conditions-based WSN system services should have the ability to continue to meet users' needs. This paper analyzes the characteristics of the wireless sensor network, the network management as the center, from the network management architecture, network topology control and network management protocol three aspects of wireless sensor network management were studied.
机译:WSN作为一种新的信息收集和加工技术,随着低功耗通信技术,传感器技术,MEMS技术,以及嵌入式系统技术的快速发展,在当今信息技术的社会中,经济和社会进步越来越重要的作用。任何信息技术开发到某个阶段,都会产生和生存,安全和其他相关问题,鉴于特殊的自然WSN,它可以是生存的基础是可生存的拓扑控制研究,希望网络拓扑设计延伸当故障/入侵公差能力达到极限时,各个节点中的网络生活和早期死亡继续提供关键服务,并且可以返回与可再生技术一起使用。在本文中,研究并分析了WSN拓扑的节能和可再生技术,提出了自己的解决方案。本文总结了WSN的生存能力。在任何不利的条件的基础条件下,WSN系统服务应该能够继续满足用户的需求。本文分析了无线传感器网络,网络管理作为中心的特点,从网络管理架构,网络拓扑控制和网络管理协议研究了无线传感器网络管理的三个方面。

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