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Energy analysis of cooperative and duty-cycled systems in shadowed environments

机译:阴影环境中的协作和占空比系统的能量分析

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摘要

We assume a traditional three-node cooperative model where a source directly communicates with a sink unless in outage, in which case it reverts to a relay to facilitate communications. In contrast to prior art, however, we focus on ultra-low power wireless sensor and machine-to-machine networks, such as standardised through the emerging IEEE 802.15.4e medium access control (MAC). This requires to cater for a more realistic link layer by incorporating shadowing, retransmissions and a duty cycled system where nodes wake up according to a given schedule. The thus designed protocol is referred to as Cooperative and Duty-Cycled Automatic Repeat Request (CDC-ARQ), and thoroughly analysed in this paper. Notably, we quantify the energy consumption of the CDC-ARQ scheme and establish optimal operating regions to minimize energy expenditure for the overall system.
机译:我们假设采用传统的三节点协作模型,其中除非发生中断,否则源直接与接收器通信,在这种情况下,源将转换为中继器以促进通信。但是,与现有技术相比,我们专注于超低功耗无线传感器和机器对机器网络,例如通过新兴的IEEE 802.15.4e媒体访问控制(MAC)进行标准化。这需要通过合并阴影,重传和占空比系统来满足更现实的链路层,其中节点根据给定的时间表唤醒。这样设计的协议称为协作和占空比自动重发请求(CDC-ARQ),并在本文中进行了全面分析。值得注意的是,我们对CDC-ARQ方案的能耗进行了量化,并建立了最佳的运行区域,以使整个系统的能耗最小。

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