Dynamic Spectrum Sensing for Energy Harvesting Wireless Sensor

Yuki Mizutani, Manabu Sato, Yuusuke Kawakita, H. Ichikawa
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引用次数: 4

Abstract

Energy harvesting wireless sensors are driven by electric power extracted from hidden environmental source of energy, such as imperceptible vibrations of walls and floors. It has been shown that radio transmitter system can be powered by energy harvesters with substituting ring for crystal oscillators, which, however, causes frequency instability in oscillator. In order to receive message from such sensors, a receiver must be able to accurately detect transmitted frequencies that may differ among respective sensors. Fast wideband radio frequency sensing schemes using filter-based energy detectors were proposed. These schemes were designed to detect radio devices operating according to known specifications, this paper proposes a dynamic spectrum sensing scheme using a fast fourier transform (FFT) based energy detector for radio devices without knowing radio frequencies. The experimental and theoretical results of this study demonstrate that dynamic spectrum sensing with an FFT-based energy detector can retrieve signal frequencies faster than traditional schemes. It is also shown that it is possible to calculate a suitable set of parameters for minimizing the total sensing time associated with any given pairing of frequency missing rate and resolution.
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能量采集无线传感器的动态频谱传感
能量收集无线传感器是由从隐藏的环境能源中提取的电力驱动的,比如难以察觉的墙壁和地板的振动。研究表明,无线电发射机系统可以用环形能量采集器代替晶体振荡器供电,但这会导致振荡器的频率不稳定。为了接收来自这些传感器的信息,接收器必须能够准确地检测各个传感器之间可能不同的传输频率。提出了基于滤波器能量检测器的快速宽带射频传感方案。这些方案旨在检测根据已知规范运行的无线电设备,本文提出了一种动态频谱感知方案,该方案使用基于快速傅里叶变换(FFT)的能量检测器,用于不知道无线电频率的无线电设备。实验和理论结果表明,基于fft能量检测器的动态频谱传感可以比传统方案更快地检索到信号频率。还表明,可以计算出一组合适的参数来最小化与任何给定的频率缺失率和分辨率配对相关的总传感时间。
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