A Receiver for IEEE 802.15.4-based High-speed Mobile IoT Communication Systems

Hidetomo Ochiai, K. Mizutani, H. Harada
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引用次数: 1

Abstract

Currently, frequency shift keying (FSK) standardized in IEEE 802.15.4 is adopted in smart metering systems as a transmission scheme for the Internet of things (IoT). On the other hand, there are increasing demands for higher data rates, long-distance transmission, and mobile communication for further expansion of IoT applications. Orthogonal frequency division multiplexing (OFDM) standardized in IEEE 802.15.4 attracts attention as a transmission scheme to adaptively realize these demands. However, in our previous study, mobile communication with the required packet error rate (PER) was achieved at moving speeds of only up to 40 km/h in an urban environment because the receiving scheme could not follow fading fluctuations in the time domain during high-speed movement. To improve the PER performance in higher-speed mobile IoT communication systems, we propose a novel channel estimation method for IEEE 802.15.4 OFDM that improves the refresh rate of channel estimates by copying estimates of neighboring subcarriers. Computer simulation results show that the proposed method combined with the maximal ratio combining achieves the required PER even at 200 km/h in the urban environment.
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基于IEEE 802.15.4的高速移动物联网通信系统接收机
目前,智能计量系统采用IEEE 802.15.4标准的频移键控(FSK)作为物联网(IoT)的传输方案。另一方面,为了进一步扩大物联网应用,人们对更高的数据速率、长距离传输和移动通信的需求越来越大。IEEE 802.15.4标准的正交频分复用(OFDM)作为一种自适应实现这些需求的传输方案受到了人们的关注。然而,在我们之前的研究中,在城市环境中,由于接收方案无法跟随高速运动时时域的衰落波动,因此只能在高达40 km/h的移动速度下实现所需的分组错误率(PER)。为了提高高速移动物联网通信系统的PER性能,我们提出了一种新的IEEE 802.15.4 OFDM信道估计方法,该方法通过复制相邻子载波的估计来提高信道估计的刷新率。计算机仿真结果表明,该方法与最大比值组合相结合,在城市环境下,即使车速达到200 km/h,也能达到所需的PER值。
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