Microwave measurement system for dispersive dielectric properties of densely packed pellets

被引:3
|
作者
Cerullo, Livia [1 ]
Winges, Johan [1 ]
Rylander, Thomas [1 ]
McKelvey, Tomas [1 ]
Gradinarsky, Lubomir [2 ]
Folestad, Staffan [2 ]
Viberg, Mats [1 ]
机构
[1] Chalmers, Dept Signals & Syst, SE-41296 Gothenburg, Sweden
[2] AstraZeneca R&D Gothenburg, Pharmaceut Technol & Dev, SE-43183 Molndal, Sweden
基金
瑞典研究理事会;
关键词
Microwave measurement; Dispersive media; Permittivity; Microcrystalline cellulose; Gradient-based optimization; Sensitivities; Finite element method; MOISTURE-CONTENT; OPTIMIZATION; TOMOGRAPHY; GRANULATION; SENSOR; NIR;
D O I
10.1016/j.measurement.2017.03.013
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We present a microwave measurement system that is intended for the estimation of the dispersive dielectric properties for densely packed pellets. In particular, we estimate the Debye parameters for the effective permittivity of a mixture of air and densely packed moist microcrystalline cellulose pellets for the frequency band 2.7-5.1 GHz. The Debye parameters are estimated by means of minimizing the misfit between the measured scattering parameters and the corresponding computed response given a model of the measurement system. This minimization is performed by means of a nonlinear iterative optimization procedure, which is supported by continuum sensitivities, and the optimum is found in 10-60 iterations for the cases presented in this article. We find that increasing moisture content yields an increase in the static permittivity and a decrease in the relaxation time. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:179 / 189
页数:11
相关论文
共 50 条
  • [41] Effect of shapes and spacings of inclusions on transport properties of densely packed composites
    Berlyand, LV
    Golovaty, D
    Movchan, AB
    Phillips, J
    COMPUTATIONAL METHODS IN MATERIALS CHARACTERISATION, 2004, 6 : 165 - 174
  • [42] Radiative properties and energy spread in densely packed, like atoms.
    Moeglich, F.
    Rompe, R.
    ZEITSCHRIFT FUR PHYSIK, 1943, 120 (11-12): : 741 - 772
  • [43] Characterizing the luminescent properties of upconversion nanoparticles in single and densely packed state
    Chen, Xiaohu
    Gui, Zhengyu
    Liang, Yong
    Jin, Xin
    Li, Simin
    Zhao, Pengjiu
    Yu, Zhangsen
    Wu, Aiguo
    Liu, Shoupeng
    Li, Hui
    JOURNAL OF INNOVATIVE OPTICAL HEALTH SCIENCES, 2019, 12 (01)
  • [44] Static and dynamic magnetic properties of densely packed magnetic nanowire arrays
    Dmytriiev, O.
    Al-Jarah, U. A. S.
    Gangmei, P.
    Kruglyak, V. V.
    Hicken, R. J.
    Mahato, B. K.
    Rana, B.
    Agrawal, M.
    Barman, A.
    Matefi-Tempfli, M.
    Piraux, L.
    Matefi-Tempfli, S.
    PHYSICAL REVIEW B, 2013, 87 (17)
  • [45] Dynamical properties of densely packed confined hard-sphere fluids
    Jung, Gerhard
    Caraglio, Michele
    Schrack, Lukas
    Franosch, Thomas
    PHYSICAL REVIEW E, 2020, 102 (01)
  • [46] MEASUREMENT OF DIELECTRIC-PROPERTIES OF ROCKS AND ITS APPLICATION TO MICROWAVE DIELECTRIC-CONSTANT LOGGING
    SINGH, RP
    LAL, T
    GEOPHYSICS, 1981, 46 (04) : 415 - 415
  • [47] MEASUREMENT OF MICROWAVE DIELECTRIC-PROPERTIES USING THE PARALLEL-PLATE DIELECTRIC RESONANCE TECHNIQUE
    SHEEN, J
    BHALLA, AS
    CROSS, LE
    JOURNAL OF APPLIED PHYSICS, 1994, 76 (06) : 3935 - 3936
  • [48] DIELECTRIC PROPERTY MEASUREMENT SYSTEM AT CRYOGENIC TEMPERATURES AND MICROWAVE-FREQUENCIES
    MOLLA, J
    IBARRA, A
    MARGINEDA, J
    ZAMARRO, JM
    HERNANDEZ, A
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 1993, 42 (04) : 817 - 821
  • [49] Dual Band Microwave Sensor for Dielectric Characterization of Dispersive Materials
    Ansari, M. Arif Hussain
    Jha, Abhishek Kumar
    Akhtar, M. Jaleel
    2015 ASIA-PACIFIC MICROWAVE CONFERENCE (APMC), VOLS 1-3, 2015,
  • [50] ON THE ONSET OF STATIONARY CONVECTION IN ELECTROTHERMAL CONVECTION IN A DIELECTRIC FLUID SATURATED DENSELY PACKED POROUS LAYER
    Kumari, Chitresh
    Kumar, Jitender
    Singh, Harjinder
    Prakash, Jyoti
    JOURNAL OF RAJASTHAN ACADEMY OF PHYSICAL SCIENCES, 2024, 23 (1-2): : 14 - 29