Reindl Leonhard M, Aftab Taimur, Gidion Gunnar, Ostertag Thomas, Luo Wei, Rupitsch Stefan Johann
Laboratory for Electrical Instrumentation and Embedded Systems, Faculty of Engineering, University of Freiburg, 79110 Freiburg, Germany.
RSSI GmbH, Bürgermeister-Graf-Ring 1, 82538 Geretsried, Germany.
Sensors (Basel). 2024 Feb 18;24(4):1323. doi: 10.3390/s24041323.
Resonators are passive time-invariant components that do not produce a frequency shift. However, they respond to an excitation signal close to resonance with an oscillation at their natural frequencies with exponentially decreasing amplitudes. If resonators are connected to antennas, they form purely passive sensors that can be read remotely. In this work, we model the external excitation of a resonator with different excitation signals and its subsequent decay characteristics analytically as well as numerically. The analytical modeling explains the properties of the resonator during transient response and decay behavior. The analytical modeling clarifies how natural oscillations are generated in a linear time-invariant system, even if their spectrum was not included in the stimulation spectrum. In addition, it enables the readout signals to be optimized in terms of duration and bandwidth.
谐振器是不产生频率偏移的无源时不变元件。然而,它们会对接近共振的激励信号作出响应,以其固有频率进行振荡,且振幅呈指数衰减。如果将谐振器与天线相连,它们就会形成可远程读取的纯无源传感器。在这项工作中,我们通过解析和数值方法对具有不同激励信号的谐振器的外部激励及其随后的衰减特性进行建模。解析建模解释了谐振器在瞬态响应和衰减行为期间的特性。解析建模阐明了在一个线性时不变系统中自然振荡是如何产生的,即使其频谱未包含在激励频谱中。此外,它还能使读出信号在持续时间和带宽方面得到优化。