DocumentCode :
14890
Title :
An Improved Rectangular Cavity Approach for Measurement of Complex Permeability of Materials
Author :
Jha, Abhishek Kumar ; Akhtar, Mohammad Jaleel
Author_Institution :
Dept. of Electr. Eng., IIT Kanpur, Kanpur, India
Volume :
64
Issue :
4
fYear :
2015
fDate :
Apr-15
Firstpage :
995
Lastpage :
1003
Abstract :
An improved rectangular cavity (RC) approach is proposed for the accurate complex permeability determination of materials in the microwave frequency band. The proposed approach assumes the bar-shaped magnetic specimen to be placed along the width of the cavity to increase the sensitivity of the measurement. A generalized closed-form formula is derived accordingly to determine the complex permeability of these bar-shaped samples in terms of the cavity parameters measured under both loaded and unloaded conditions. The proposed formula is found to improve the accuracy of the original RC approach where samples are placed in the H-plane traversing the maximum width of the cavity for permeability measurement. The improvement in accuracy is facilitated by considering the sinusoidal magnetic field variation over the test sample, which is otherwise neglected in most of the earlier approaches. The modified formula is numerically tested for a number of samples having wide range of permeability variations, and the obtained results are typically 40% more accurate than the values obtained using the original formula. Finally, the synthesized magnetic samples, viz., the carbonyl iron-epoxy composite and the manganese ferrite, are measured by placing them inside the fabricated X-band cavity with the help of a vector network analyzer. The proposed approach is quite advantageous for magnetic materials as finite-size samples having sample to cavity volume ratio of less than 3e-3 can be characterized quite accurately with typical errors of 2% and 3% in the real and imaginary parts of the complex permeability, respectively.
Keywords :
ferrites; magnetic fields; magnetic permeability measurement; microwave measurement; network analysers; H-plane traversing; RC approach; X-band cavity fabrication; bar shaped magnetic specimen; carbonyl iron-epoxy composite; cavity parameter measurement; cavity volume ratio; complex permeability determination accuracy; magnetic materials; magnetic sample synthesis; manganese ferrite; microwave frequency band; permeability variation; rectangular cavity approach; sinusoidal magnetic field variation; vector network analyzer; Accuracy; Cavity resonators; Magnetic resonance; Magnetic resonance imaging; Permeability; Permeability measurement; Cavity perturbation technique; complex permeability; magnetic material; resonant method; resonant method.;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2014.2362433
Filename :
6937202
Link To Document :
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