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LER-MAC: A Load-independent Energy-efficient and Rate-control Integrated Asynchronous Duty Cycle MAC for Wireless Sensor Networks

机译:LER-MAC:无线传感器网络的独立于负载的节能和速率控制集成异步占空比MAC

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Considering energy as a crucial resource, several duty cycle based MAC have already been proposed for Wireless Sensor Networks (WSNs) to gain higher energy efficiency during long idle period of the sensors, and are optimized for light traffic loads. Contrastively, considering the bandwidth constraint of WSNs, and to optimize the heavy traffic loads, another research trend is continuing in devising rate and congestion control at the MAC layer. To provide an integrated solution of both these distinct research trends at the MAC layer, in this paper, we present a Load-independent Energy-efficient and Rate-control Integrated Asynchronous Duty Cycle MAC (LER-MAC) for WSNs. Performance of LER-MAC has been evaluated using ns-2 which demonstrates that, LER-MAC conserves energy considerably during light traffic loads along with procures higher throughput and lower latency avoiding packet drops through maximum utilization of the channel during heavy traffic loads.
机译:考虑到能量作为关键资源,已经提出了几种基于占空比的MAC用于无线传感器网络(WSN),以在传感器的长空闲时段期间获得更高的能量效率,并且针对轻的交通负载进行了优化。对比,考虑到WSN的带宽约束,并优化繁忙的交通负荷,另一种研究趋势是在MAC层的设计方向和拥塞控制方面继续。为了在本文中提供MAC层的这些不同研究趋势的集成解决方案,我们为WSN提供了一种独立于负载独立的节能和速率控制集成的异步占空比算法MAC(LER-MAC)。 LER-MAC的性能已经使用NS-2进行了评估,该NS-2表明,LER-MAC在轻微的流量负载期间可以显着地节省能量以及采购较高的吞吐量和更低延迟避免在繁忙的交通负荷期间信道的最大利用率下降。

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