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Optimal Routing for Time-Driven EH-WSN under Regular Energy Sources

机译:常规能源下时间驱动EH-WSN的最佳路由

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摘要

The recent provision of energy-harvesting capabilities to wireless sensor networks (WSN) has entailed the redefinition of design objectives. Specifically, the traditional goal of maximizing network lifetime has been replaced by optimizing network performance, namely delay and throughput. The present paper contributes to this reformulation by considering the routing problem for the class of time-driven energy-harvesting WSN (EH-WSN) under regular or quasi-periodic energy sources. In particular, this paper shows that the minimum hop count (MHC) criterion maximizes the average duty cycle that can be sustained by nodes in this type of scenarios. This is a primary objective in EH-WSN, since large duty cycles lead to enhanced performance. Based on a previous result, a general expression is first obtained that gives mathematical form to the relationship between duty cycle and traffic load for any node in a time-driven EH-WSN fed by a regular energy source. This expression reveals that the duty cycle achievable by a node decreases as its traffic load increases. Then, it is shown that MHC minimizes the average traffic load over the network, and thus it maximizes the average duty cycle of nodes. This result is numerically validated via simulation by comparison with other well-known routing strategies. Accordingly, this paper suggests assigning top priority to the MHC criterion in the development of routing protocols for time-driven EH-WSN under regular energy sources.
机译:最近为无线传感器网络(WSN)提供了能量收集功能,因此需要重新定义设计目标。具体而言,最大化网络寿命的传统目标已被优化网络性能(即延迟和吞吐量)所取代。本文通过考虑常规或准周期性能源下的时间驱动型能量收集WSN(EH-WSN)类的路由问题,为这种重新设计做出了贡献。特别是,本文表明,最小跳数(MHC)标准使这种情况下节点可以承受的平均占空比最大化。这是EH-WSN的主要目标,因为大占空比会提高性能。根据先前的结果,首先获得一个通用表达式,该数学表达式以数学形式给出了由常规能源馈送的时间驱动EH-WSN中任何节点的占空比和流量负载之间的关系。该表达式表明,节点可实现的占空比随着其流量负载的增加而减小。然后,表明MHC最小化了网络上的平均流量负载,从而最大化了节点的平均占空比。通过与其他公知的路由策略进行比较,可以通过仿真在数值上验证此结果。因此,本文建议在常规能源下,在时间驱动的EH-WSN路由协议的开发中,将MHC标准分配为最高优先级。

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