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EE-IoT: An Energy-Efficient IoT Communication Scheme for WLANs

机译:EE-IoT:WLAN的节能型IoT通信方案

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While Narrow-Band Internet of Things (NB-IoT) has been standardized by 3GPP to provide wireless Internet access for IoT devices, this service is expected to come with a monthly fee (e.g., $1 or $2 per month per device). As the number of IoT devices tends to be large, the service charge will impose a considerable financial burden on the end users. In this paper, we propose an Energy-Efficient IoT (EE-IoT) communication scheme by taking advantage of the existing WiFi infrastructure that is widely available in home, office, campus, and city environments. EE-IoT will not only avoid monthly service charge for the end users but also maintain a low power consumption for IoT devices. The key component of EE-IoT is an asymmetric physical (PHY) design, which enables an OFDM-based broadband AP to communicate with multiple QAM-based narrowband IoT devices at a low sampling rate (250 ksps) in both uplink and downlink. The trick in our design is that, instead of using the same carrier frequency as the AP, each IoT device tunes its carrier frequency to a particular subcarrier of the AP's OFDM signal, making it possible to encode/decode the data on that subcarrier at a low sampling rate. Based on this new PHY, we propose a MAC protocol to enable EE-IoT in WLANs. We have built a prototype of EE-IoT on a USRP2 wireless testbed and evaluated its performance in an office building environment. Experimental results show that an AP can serve 24 IoT devices simultaneously and each IoT device can achieve more than 187 kbps in the downlink and more than 125 kbps in the uplink.
机译:虽然3GPP已对窄带物联网(NB-IoT)进行了标准化,以为物联网设备提供无线Internet接入,但预计该服务将收取月租费(例如,每台设备每月1美元或2美元)。随着物联网设备数量的增加,服务费将给最终用户带来可观的财务负担。在本文中,我们通过利用在家庭,办公室,校园和城市环境中广泛可用的现有WiFi基础设施,提出一种节能IoT(EE-IoT)通信方案。 EE-IoT不仅可以避免向最终用户收取月服务费,而且可以保持IoT设备的低功耗。 EE-IoT的关键组件是非对称物理(PHY)设计,它使基于OFDM的宽带AP能够在上行链路和下行链路中以低采样率(250 ksps)与多个基于QAM的窄带IoT设备通信。我们设计的诀窍在于,每个物联网设备不使用与AP相同的载波频率,而是将其载波频率调整为AP OFDM信号的特定子载波,从而可以在一个子载波上对数据进行编码/解码。低采样率。基于此新的PHY,我们提出了一种MAC协议以在WLAN中启用EE-IoT。我们在USRP2无线测试平台上构建了EE-IoT原型,并评估了其在办公环境中的性能。实验结果表明,一个AP可以同时为24个物联网设备提供服务,每个物联网设备在下行链路上可以达到187 kbps以上,在上行链路上可以达到125 kbps以上。

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