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Performance of frame transmissions and event-triggered sleeping in duty-cycled WSNs with error-prone wireless links

机译:具有易错无线链接的占空比WSN中帧传输和事件触发的睡眠性能

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Two types of packet transmission schemes are prevalent in duty-cycled wireless sensor networks, i.e., single packet transmission and aggregated packet transmission which integrates multiple packets in one frame. While most existing models are developed based on an error-free channel assumption, this paper evaluates the performance of both transmission schemes under error-prone channel conditions. We develop a four-dimensional discrete-time Markov chain model to investigate the impact of channel impairments on the performance of frame transmissions. Together with tracking the number of packets in the queue, number of retransmissions and number of active nodes, the fourth dimension of the model is able to capture the channel behavior at the frame-level. Based on the developed model, we analyze packet loss probability, packet delay, throughput, node energy consumption, and energy efficiency under various channel conditions. To further reduce energy consumption, we propose an event-triggered sleeping (ETS) energy mode for synchronous duty-cycling medium access control protocols. Numerical results reveal to which extent channel impairments may deteriorate the network performance, as well as the advantage of adopting aggregated packet transmission. The benefit brought by the ETS energy mode is also demonstrated showing that the network lifetime is considerably extended, particularly in low traffic load scenarios. (C) 2018 Elsevier B.V. All rights reserved.
机译:在占空比无线传感器网络中流行两种类型的分组传输方案,即,单个分组传输和将多个分组集成在一帧中的聚合分组传输。虽然大多数现有模型都是基于无差错信道的假设而开发的,但本文还是在易错信道条件下评估了两种传输方案的性能。我们开发了一个二维离散时间马尔可夫链模型,以研究信道损伤对帧传输性能的影响。与跟踪队列中数据包的数量,重传的数量和活动节点的数量一起,该模型的第四维能够捕获帧级别的信道行为。基于开发的模型,我们分析了各种信道条件下的丢包概率,包延迟,吞吐量,节点能耗和能效。为了进一步降低能耗,我们为同步占空比媒体访问控制协议提出了一种事件触发的睡眠(ETS)能量模式。数值结果表明,信道损伤在多大程度上可能会降低网络性能,以及采用聚合数据包传输的优势。还证明了ETS能量模式带来的好处,表明网络寿命大大延长,尤其是在低流量负载情况下。 (C)2018 Elsevier B.V.保留所有权利。

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