The Q-factor and peak frequency of resonant phenomena give useful information about the propagation and storage of energy in an electronic system and therefore its electromagnetic compatibility performance. However, the calculation of Q by linear interpolation of a discrete frequency response to obtain the half-power bandwidth can give inaccurate results, particularly if the data are noisy or the frequency resolution is low. We describe a more accurate method that makes use of the Lorentzian shape of the resonant peaks and involves fitting a second-order polynomial to the reciprocal power plotted against angular frequency. We demonstrate that this new method requires less than one quarter the number of frequency points as the linear method ...
The various Q factors and circuit efficiency of a cavity resonator can be evaluated from standing-wa...
An extrapolation technique is presented which reduces the computational demands of obtaining a wide-...
The reverberation chamber time constant quantifies how fast a reverberation chamber loses its stored...
The Q-factor and peak frequency of resonant phenomena give useful information about the propagation ...
Measurements of material properties such as loss tangent and surface resistance at microwave frequen...
Microwave resonators are of widespread use in technological applications as well as in many research...
We present numerical and experimental results aimed at reducing the uncertainties in measurements of...
Accurate measurements of the unloaded Q0 factor of microwave resonators are necessary in many microw...
An algorithm is developed for the HP automated network analyzer that can determine the three basic p...
A new time-domain technique for an accurate and fast measurement of the resonant frequency and $Q$ ...
An algorithm has been developed for an HP network analyzer that can determine the resonant frequency...
Stored energy and Q-factors are used to quantify the performance of small antennas. Accurate and eff...
The rapid increase of affordable computing resources combined with the continued development and ref...
International audienceA microwave domain characterization approach is proposed to determine the prop...
Microwave resonators are widely adopted as high sensitivity sensors in both applied and fundamental ...
The various Q factors and circuit efficiency of a cavity resonator can be evaluated from standing-wa...
An extrapolation technique is presented which reduces the computational demands of obtaining a wide-...
The reverberation chamber time constant quantifies how fast a reverberation chamber loses its stored...
The Q-factor and peak frequency of resonant phenomena give useful information about the propagation ...
Measurements of material properties such as loss tangent and surface resistance at microwave frequen...
Microwave resonators are of widespread use in technological applications as well as in many research...
We present numerical and experimental results aimed at reducing the uncertainties in measurements of...
Accurate measurements of the unloaded Q0 factor of microwave resonators are necessary in many microw...
An algorithm is developed for the HP automated network analyzer that can determine the three basic p...
A new time-domain technique for an accurate and fast measurement of the resonant frequency and $Q$ ...
An algorithm has been developed for an HP network analyzer that can determine the resonant frequency...
Stored energy and Q-factors are used to quantify the performance of small antennas. Accurate and eff...
The rapid increase of affordable computing resources combined with the continued development and ref...
International audienceA microwave domain characterization approach is proposed to determine the prop...
Microwave resonators are widely adopted as high sensitivity sensors in both applied and fundamental ...
The various Q factors and circuit efficiency of a cavity resonator can be evaluated from standing-wa...
An extrapolation technique is presented which reduces the computational demands of obtaining a wide-...
The reverberation chamber time constant quantifies how fast a reverberation chamber loses its stored...