Real-time RF Sensor Monitoring Based on Optical Injected Semiconductor Laser and Temporal Measurement

Shuo Li, A. Zhang, H. Pan, Radu-Florin Stancu, Zhongwei Tan, Chao Wang
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Abstract

Ultrafast and real-time RF sensor monitoring is in true demand for dynamic and transient sensing scenarios. In this paper, a high resolution and real-time RF sensor interrogation system based on an optically injected semiconductor laser and temporal measurement is proposed. Eliminating the need for RF spectrum measurement, the frequency of the RF sensor can be determined from temporal measurements featuring high speed and high resolution. In addition, no temporal reference signal is required and RF sensor interrogation is achieved by direct measurement of time interval of a pair of electrical pulses. Real-time monitoring of a RF temperature sensing is experimentally demonstrated and our results show that the proposed system offers a measurement bandwidth of 6 GHz, and an interrogation speed of 1 MHz. Only a very low temporal sampling rate of 60 MS/s is required.
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基于光注入半导体激光器和时间测量的射频传感器实时监测
超快速和实时的射频传感器监测是动态和瞬态传感场景的真正需求。本文提出了一种基于光注入半导体激光器和时间测量的高分辨率实时射频传感器询问系统。消除了对射频频谱测量的需要,射频传感器的频率可以通过具有高速和高分辨率的时间测量来确定。此外,不需要时间参考信号,通过直接测量一对电脉冲的时间间隔来实现射频传感器的询问。实验证明了射频温度传感的实时监测,结果表明,该系统提供了6 GHz的测量带宽和1 MHz的查询速度。只需要非常低的60 MS/s的时间采样率。
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