MAXIMIZE THE LIFETIME OF SENSOR NETWORK BY LOAD BALANCING USING TREE TOPOLOGY

S. Patil, B. Shetty
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引用次数: 0

Abstract

In many wireless sensor networks due to the limited energy of sensor nodes energy conservation is one of the most important challenges. To enhance the lifetime of the network emphasis is given to design energy efficient routing algorithms. In WSN, sensor nodes which are nearer to the base station having a task of collecting data for the entire area and send to the base station. This node has an additional load and depletes its energy faster. This paper addresses the problem of lifetime maximization by load balancing. This paper proposes energy efficient load balanced data collection algorithm considering different network parameter (e.g., density, degree). In this method, Data collection tree topology is built at the sink node. Performance of the proposed algorithm is evaluated by considering various parameters like topology, availability of resources and the energy utilization of nodes in different paths of the tree, which may vary and ultimately impacts the overall network lifetime. Sensor nodes are switched from their original path to other based on the load and it reduces communication overhead.
通过树形拓扑负载均衡实现传感器网络寿命最大化
在许多无线传感器网络中,由于传感器节点的能量有限,节能是最重要的挑战之一。为了提高网络的使用寿命,重点设计了节能路由算法。在无线传感器网络中,距离基站较近的传感器节点,其任务是收集整个区域的数据并发送给基站。该节点具有额外的负载,并且消耗能量的速度更快。本文通过负载平衡来解决寿命最大化的问题。本文提出了一种考虑不同网络参数(如密度、程度)的高效负载平衡数据采集算法。在这种方法中,数据收集树拓扑是在汇聚节点上构建的。通过考虑拓扑结构、资源可用性和树的不同路径中节点的能量利用率等各种参数来评估所提出算法的性能,这些参数可能会变化并最终影响整个网络寿命。传感器节点根据负载从其原始路径切换到其他路径,从而减少了通信开销。
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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