A novel energy efficient chain based hierarchical routing protocol for wireless sensor networks

K. Majumder, Sudhabindu Ray, S. Sarkar
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引用次数: 16

Abstract

The nodes in a sensor network are severely constrained by energy. Reducing the energy consumption of the nodes to prolong the network lifetime is considered a critical challenge while designing a new routing protocol. In this paper we propose a new power-aware, adaptive, hierarchical and chain based protocol — CCPAR (Clustered Chain based Power Aware Routing) that utilizes the periodic assignments of the cluster head role to different nodes based on the highest residual battery capacity for ensuring the even dissipation of power by all the nodes. Transmission from a single cluster head to the base station in each round and the distribution of the data aggregation workload among all the nodes, save the cluster heads from early exhaustion. The use of data aggregation also reduces the amount of information to be transmitted to the base station. By chaining the nodes in each cluster and using a separate chain for the cluster heads, CCPAR offers the advantage of small transmit distances for most of the nodes and thus helps them to be operational for a longer period of time by conserving their limited energy. The simultaneous construction of multiple chains in different clusters reduces the time for chain construction as well as the length of each of the chains. These shorter length chains solve the problem of excessive delay in transmission for the distant nodes. Use of a fresh set of parameter values in each round provides the users the flexibility to change these values in a way to control the power consumption. The introduction of MAX threshold enables CCPAR to be quickly responsive and thus highly suitable for time critical applications. From the performance evaluation we observe that CCPAR outperforms other protocols in terms of energy saving and longevity of the network.
一种新的基于节能链的无线传感器网络分层路由协议
传感器网络中的节点受到能量的严重限制。在设计新的路由协议时,降低节点的能量消耗以延长网络的生命周期被认为是一个关键的挑战。本文提出了一种新的功率感知、自适应、分层和基于链的协议——CCPAR (Clustered chain based Power Aware Routing),该协议利用基于最高剩余电池容量的簇头角色周期性分配给不同节点,以确保所有节点的功率均匀耗散。每轮从单个簇头传输到基站,并将数据聚合工作负载分配到所有节点,避免簇头过早耗尽。数据聚合的使用也减少了要传输到基站的信息量。通过将每个集群中的节点连接起来,并为簇头使用单独的链,CCPAR为大多数节点提供了传输距离小的优势,从而通过节省有限的能量帮助它们运行更长时间。在不同的簇中同时构建多个链,减少了链的构建时间和每个链的长度。这些较短长度的链解决了远距离节点传输延迟过大的问题。在每一轮中使用一组新的参数值,为用户提供了以控制功耗的方式更改这些值的灵活性。MAX阈值的引入使CCPAR能够快速响应,因此非常适合时间关键型应用。从性能评估中我们观察到,CCPAR在节能和网络寿命方面优于其他协议。
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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