论文标题

EHRP:一种有效的混合路由协议,可在WSN中妥协和延迟之间妥协

EHRP : An effective hybrid routing protocol to compromise between energy consumption and delay in WSNs

论文作者

Moussa, Noureddine, Hamidi-Alaoui, Zakaria, Alaoui, Abdelbaki El Belrhiti El

论文摘要

接收器移动性被视为解决无线传感器网络(WSN)中热点问题的成功策略。移动水槽在网络中漫游,并通过短期通信从群集头(CH)等特殊节点收集数据,从而提高能源效率。已经提出了许多基于移动水槽的路由协议,但是,它们会引起较高的延迟,尤其是在大规模网络中,移动水槽必须长时间旅行以从CHS收集数据,因此他们无法确保能源效率和延迟之间的折衷。为了解决此问题,我们在本文中提出了一种称为EHRP的有效混合路由协议。该协议的主要目的是在单跳和多跳路由之间结合。的确,当移动水槽到达集群时,将收集其数据,而其他遥远的CHS继续使用我们建议的改进的蚂蚁菌落优化(ACO)算法来发送数据,以避免等待时间。现有的ACO算法在距离启发式启发式中使用,在现实世界中不实用,并且在路径选择中未能考虑相关的能源统计信息(例如,最小能量,平均能量),从而导致网络中的能源消耗不平衡。为了解决这些问题,提议的路由算法采用了接收的信号强度指标(RSSI)和能源的统计信息,以有效消耗能源并减少发送失败的可能性。测试了建议的路由协议的性能,并将其与相关路由协议的性能进行了比较。模拟结果表明,与其同行相比,EHRP成功地最大程度地减少了能耗和延迟,并提高了数据包的输送比率。

Sink mobility is seen as a successful strategy to resolve the hotspot problem in Wireless Sensor Network (WSN). Mobile sinks roam in the network and collect data from special nodes such as Cluster Heads (CH) by means of short-range communications which improves the energy efficiency. Numerous mobile sink based routing protocols have been proposed, however, they incur high delays especially in large scale networks where the mobile sink has to travel for a long distance to collect data from CHs and consequently they failed to ensure a tradeoff between energy efficiency and delay. To resolve this issue, we propose in this paper an Effective Hybrid Routing Protocol termed as EHRP. The main aim of this protocol is to combine between single-hop and multi-hop routing. Indeed, when the mobile sink arrives at a cluster it collects its data while the other distant CHs continue to send their data using our proposed improved Ant Colony Optimization (ACO) algorithm to avoid the waiting-time. The existing ACO algorithms use in the distance heuristic which is not practical in real world and fail to consider relevant statistic information of energy (e.g., minimum energy, average energy) in path selection which leads to unbalanced energy consumption in the network. To address these issues, the proposed routing algorithm employs the Received Signal Strength Indicator (RSSI) and statistic information of energy to consume energy efficiently and decrease the probability of sending failure. The performance of the proposed routing protocol is tested and compared with those of the relevant routing protocols. The simulation results show that, in comparison with its counterparts, EHRP succeeds to minimize energy consumption and delay as well as enhancing the packet delivery ratio.

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