Chair of Microwave Engineering, Institute of Electrical Engineering and Information Technology, Faculty of Engineering, Kiel University, Kaiserstr. 2, 24143 Kiel, Germany.
FEMTO-ST Institute, Department of Time and Frequency, Université de Bourgogne Franche-Comté (UBFC), and CNRS, ENSMM, 26 Rue de l'Épitaphe, 25000 Besançon, France.
Sensors (Basel). 2019 Jan 7;19(1):185. doi: 10.3390/s19010185.
Surface acoustic wave (SAW) sensors in the form of two-port resonators or delay lines are widely used in various fields of application. The readout of such sensors is achieved by electronic systems operating either in an open-loop or in a closed-loop configuration. The mode of operation of the sensor system is usually chosen based on requirements like, e.g., bandwidth, dynamic range, linearity, costs, and immunity against environmental influences. Because the limit of detection (LOD) at the output of a sensor system is often one of the most important figures of merit, both readout structures, i.e., open-loop and closed-loop systems, are analyzed in terms of the minimum achievable LOD. Based on a comprehensive phase noise analysis of these structures for both resonant sensors and delay line sensors, expressions for the various limits of detection are derived. Under generally valid conditions, the equivalence of open-loop and closed-loop operation is shown for both types of sensors. These results are not only valid for SAW devices, but are also applicable to all kinds of phase-sensitive sensors.
表面声波(SAW)传感器以两端口谐振器或延迟线的形式广泛应用于各个领域。这种传感器的读取是通过工作在开环或闭环配置下的电子系统来实现的。传感器系统的工作模式通常是根据带宽、动态范围、线性度、成本和对环境影响的免疫力等要求来选择的。由于传感器系统输出端的检测限(LOD)通常是最重要的性能指标之一,因此这两种读取结构,即开环和闭环系统,都针对可达到的最小 LOD 进行了分析。基于对这两种传感器(谐振式和延迟线式)的综合相位噪声分析,推导出了各种检测限的表达式。在一般有效的条件下,两种传感器的开环和闭环操作等效性得到了证明。这些结果不仅对 SAW 器件有效,而且适用于各种相敏传感器。