考虑节点折衷电阻的能效路由的概率方法

D. Singh, Shubhanjali Sharma, V. Jain, Jyoti Gajrani
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引用次数: 1

摘要

无线传感器网络基本上是一个数据通信系统,由几个到数千个微小的无线传感器节点组成。这些由电池供电的传感器节点相互协作以完成数据传输。由于无线传感器网络的寿命取决于电池供电的传感器节点,因此路由协议将跳数和电池电量作为度量标准。在无线传感器网络中,信息或数据包从源节点传输到汇聚节点时,能效是最需要考虑的问题。攻击者团体可以利用一些技术,通过了解节点之间的效率和信任关系,然后在从源到接收的路径中插入一些不需要的数据包。DRP、MTRP和EENC是一些可以用来提供高效传输数据包的技术。EENC是具有节点折衷电阻的能效路由。该技术基于蚁群优化技术。该技术考虑了能量、信任和跳数三个参数,以找出节点中的受损节点,并删除包含该节点的从源到汇的路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probabilistic method for energy efficiency routing with node compromised resistance
A wireless sensor network is basically a data communication system that consists of from several to thousands of tiny wireless sensor nodes. These battery powered sensor nodes work with each other to accomplish data transmission. Since the lifetime of wireless sensor network depends on such battery powered sensor nodes, hop counts and battery power have been taken as metrics in routing protocols. In wireless sensor network, energy efficiency is most critical issue that should be considered while transmitting information or data packet from source node to sink node. Some techniques can be used by attacker communities through getting the knowledge about efficiency and trust relationship among the nodes and then insert some unwanted packets in the path from source to sink. DRP, MTRP and EENC are some techniques that can be used to provide energy efficient transmission of data packets. EENC is energy efficiency routing with node compromised resistance. This technique is based on the ant colony optimization technique. Three parameters in this technique, energy, trust and hop count are considered here to find out the compromised node among the nodes and remove the path from source to sink containing that node.
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