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Fuzzy logic based multihop topology control routing protocol in wireless sensor networks

机译:基于模糊的基于逻辑的多彩色拓扑控制无线传感器网络中的路由协议

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Reducing energy consumption has been a recent focus of wireless sensor network as it directly affects network lifetime. Geographical adaptive fidelity (GAF) is one of the well-known topology management multihop location-based routing protocols. Its main objective is to turn-off unnecessary sensor nodes while maintaining uninterrupted connectivity between communicating sensors. It is proved to be able to extend the lifetime of self-configuring systems by exploiting redundancy to conserve energy while maintaining application fidelity. Traditional GAF introduces unreachable corners; also the symmetric property is at stake thus providing with less network utility. In this paper, we propose a fuzzy logic based geographic routing protocol named FGAF-HEX to achieve higher energy optimization. Further, we use a GAF based Honeycomb Architecture to replace the traditional square grid with the hexagonal virtual grid. Simulation and analysis results show significant improvement in proposed work over traditional GAF in terms of various parameters, i.e., network lifetime and network connectivity. Results show that FGAF-HEX provides a substantial improvement in terms of various metrics as compared to traditional GAF.
机译:降低能耗最近是无线传感器网络的重点,因为它直接影响网络寿命。地理自适应保真度(GAF)是已知众所周知的拓扑管理多跳地点地点路由协议之一。其主要目标是关闭不必要的传感器节点,同时保持通信传感器之间不间断的连接。被证明能够通过利用冗余来延长自配置系统的寿命以在保持应用保真度的同时节省能量。传统的GAF介绍无法到达的角落;此外,对称属性有股份,从而提​​供较少的网络实用程序。在本文中,我们提出了一个名为FGAF-HEX的模糊基于地理路由协议,以实现更高的能量优化。此外,我们使用基于GAF的蜂窝架构,用六角形虚拟网格更换传统的方形网格。仿真和分析结果表明,在各种参数,即网络生命周期和网络连接方面,在传统GAF方面的拟议工作的显着改进。结果表明,与传统GAF相比,FGAF-HEX提供了各种指标的大量改进。

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