TY - JOUR AB - Purpose The purpose of this study is to introduce a novel method for the measurement of electromagnetic material parameters.Design/methodology/approach The main idea behind the approach is the fact that for slabs with elongated shapes, the intensity of the backscattered field and the electromagnetic resonance frequency corresponding to the length of the sample are dependent on the conductivity of the sample’s material.Findings It is shown that for a known scattered field and resonance frequency, it is possible to formulate an inverse problem as to the calculation of the conductivity of the sample’s material at the considered frequencies. To investigate the applicability of the method, demonstrative experiments are performed during which the micro-Doppler effect is used to increase the measurement accuracy. The idea is extended to the case of anisotropic samples, with slight modifications proposed to the experimental setup in the case of significant anisotropy in the investigated material.Practical implications The measurement method may prove useful for the investigation of the high-frequency conductive properties of certain materials of interest.Originality/value To the best of the authors’ knowledge, this is the first time the use of the micro-Doppler effect is proposed for the purpose of the measurement of material parameters. VL - 38 IS - 5 SN - 0332-1649 DO - 10.1108/COMPEL-12-2018-0502 UR - https://doi.org/10.1108/COMPEL-12-2018-0502 AU - Marák Károly AU - Bilicz Sándor AU - Pávó József PY - 2019 Y1 - 2019/01/01 TI - Experimental technique for high-frequency conductivity measurement T2 - COMPEL - The international journal for computation and mathematics in electrical and electronic engineering PB - Emerald Publishing Limited SP - 1711 EP - 1722 Y2 - 2024/09/20 ER -