Self power analysing energy efficient protocol (SPAEEP): An adaptive approach

N. G. Palan, B. V. Barbadekar, Suahs Patil
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引用次数: 4

Abstract

Main challenge in WSN (Wireless sensor network) faced by researcher is - battery life (energy of a node). In this paper general framework of distributed mechanism of multi-hop WN (wireless network) is considered. Cluster based routing protocols like Low Energy Adaptive Clustering Hierarchy (LEACH), Hybrid Energy Efficiency Protocol (HEEP). Threshold sensitive energy efficient network Protocol (TEEN) and PEGASIS efficiently manages the energy usage. But still these protocol should be thoroughly studied and revised to achieve more energy efficiency. Paper focuses on LEACH protocol, where cluster Head (CH) selection process termed as `round' (r). Each round costs setup and steady state phase of the network. Research proposes novel idea of Self Power Analyzing Energy Efficient Protocol (SPAEEP) with energy model (eM). EM is applied to CH which adaptively decides to initiate next round based on balanced energy. Adaptive decision will help in reducing the number of rounds (r). Application of the same to the nodes will lead to fault tolerant network with proper hand over mechanism. Concept is also extended to 802.15.4 protocol, as it follows standard network architecture. Our results reveal that new method suggested will reduce energy consumption of CH and hence the increased life span of network. The outcome is fault tolerant network.
自功率分析节能协议(SPAEEP):一种自适应方法
无线传感器网络研究人员面临的主要挑战是电池寿命(节点的能量)。本文研究了多跳无线网络分布式机制的总体框架。基于集群的路由协议,如低能量自适应聚类层次(LEACH),混合能源效率协议(HEEP)。阈值敏感节能网络协议(TEEN)和PEGASIS有效地管理能源使用。但这些协议仍应深入研究和修订,以实现更高的能源效率。本文重点讨论了LEACH协议,其中簇头(CH)选择过程称为“一轮”(r)。每一轮都花费网络的建立和稳态阶段。提出了基于能量模型的自功率分析节能协议(SPAEEP)的新思路。将EM应用于CH,根据平衡的能量自适应决定启动下一轮。自适应决策有助于减少轮数(r),将其应用于节点将导致具有适当移交机制的容错网络。由于802.15.4协议遵循标准的网络体系结构,因此该概念也扩展到802.15.4协议。我们的研究结果表明,新方法可以降低CH的能耗,从而提高网络的寿命。结果是容错网络。
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