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首页> 外文期刊>Annals of Telecommunications >A load-aware energy-efficient and throughput-maximized asynchronous duty cycle MAC for wireless sensor networks
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A load-aware energy-efficient and throughput-maximized asynchronous duty cycle MAC for wireless sensor networks

机译:用于无线传感器网络的负载感知型节能和吞吐量最大化的异步占空比MAC

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摘要

Being a pivotal resource, conservation of energy has been considered as the most striking issue in the wireless sensor network research. Several works have been performed in the last years to devise duty cycle based MAC protocols which optimize energy conservation emphasizing low traffic load scenario. In contrast, considering the high traffic situation, another research trend has been continuing to optimize both energy efficiency and channel utilization employing rate and congestion control at the MAC layer. In this paper, we propose A Load-aware Energy-efficient and Throughput-maximized Asynchronous Duty Cycle MAC (LET-MAC) protocol for wireless sensor networks to provide an integrated solution at the MAC layer considering both the low-and high-traffic scenario. Through extensive simulation using ns-2, we have evaluated the performance of LET-MAC. LET-MAC achieves significant energy conservation during low traffic load (i.e., no event), compared to the prior asynchronous protocol, RI-MAC, as well as attains optimal throughput through maximizing the channel utilization and maintains lower delay in regard to the CSMA/CA-like protocol during a high volume of traffic (i.e., when an event occurs).
机译:作为关键资源,节能一直被认为是无线传感器网络研究中最突出的问题。过去几年中已经进行了几项工作,以设计基于占空比的MAC协议,该协议优化了节能,强调了低流量负载情况。相反,考虑到高业务量情况,另一研究趋势一直在继续以MAC层的速率和拥塞控制来优化能量效率和信道利用率。在本文中,我们提出了一种用于无线传感器网络的负载感知型节能且最大吞吐量的异步占空比MAC(LET-MAC)协议,以在考虑低流量和高流量情况下在MAC层提供集成解决方案。通过使用ns-2的广泛仿真,我们评估了LET-MAC的性能。与先前的异步协议RI-MAC相比,LET-MAC在低流量负载(即无事件)下实现了显着的节能,并且通过最大化信道利用率并在CSMA /大量流量期间(即事件发生时)的类似于CA的协议。

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