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Enabling early sleeping and early data transmission in wake-up radio-enabled IoT networks

机译:在唤醒无线电的IoT网络中实现早期睡眠和早期数据传输

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摘要

Wireless sensor networks (WSNs) are one of the key enabling technologies for the Internet of things (IoT). In such networks, wake-up radio (WuR) is gaining its popularity thanks to its on-demand transmission feature and overwhelming energy consumption superiority. Despite this advantage, overhearing still occurs when a wake-up receiver decodes the address of a wake-up call (WuC) which is not intended to it, causing a certain amount of extra energy waste in the network. Moreover, long latency may occur due to WuC address decoding since WuCs are transmitted at a very low data rate. In this paper, we propose two schemes, i.e., early sleeping (ES) and early data transmission (EDT), to further reduce energy consumption and latency in WuR-enabled IoT/WSNs. The ES scheme decodes and validates an address bit-by-bit, allowing those non-destined devices go to sleep at an earlier stage. The EDT scheme enables a sender to transmit small IoT data together with WuC packets so that the main radio does not have to be in full operation for data reception. We implement both schemes through a WuR testbed. Furthermore, we present a framework based on M/G/1 and assess the performance of the schemes through both theoretical analysis and simulations. (C) 2019 Elsevier B.V. All rights reserved.
机译:无线传感器网络(WSN)是物联网(IoT)的关键启用技术之一。在这样的网络中,唤醒无线电(WuR)由于其按需传输功能和压倒性的能耗优势而越来越受欢迎。尽管有此优点,当唤醒接收器解码不希望接收到的唤醒呼叫(WuC)的地址时,仍会发生窃听,从而在网络中造成一定程度的额外能量浪费。而且,由于WuC以非常低的数据速率发送,所以由于WuC地址解码而可能发生长等待时间。在本文中,我们提出了两种方案,即早期睡眠(ES)和早期数据传输(EDT),以进一步减少启用WuR的IoT / WSN中的能耗和延迟。 ES方案逐位解码并验证地址,从而使那些非目的地设备可以在更早的阶段进入睡眠状态。 EDT方案使发送方可以将小的IoT数据与WuC数据包一起发送,从而不必为数据接收而完全操作主无线电。我们通过WuR测试平台实施这两种方案。此外,我们提出了一个基于M / G / 1的框架,并通过理论分析和仿真评估了该方案的性能。 (C)2019 Elsevier B.V.保留所有权利。

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