Free-space measurement of dielectric properties of cereal grain and oilseed at microwave frequencies S Trabelsi, SO Nelson Measurement Science and Technology 14 (5), 589, 2003 | 228 | 2003 |
New density-independent calibration function for microwave sensing of moisture content in particulate materials S Trabelsi, AW Krazsewski, SO Nelson IEEE Transactions on Instrumentation and Measurement 47 (3), 613-622, 1998 | 217 | 1998 |
A microwave method for on-line determination of bulk density and moisture content of particulate materials S Trabelsi, AW Kraszewski, SO Nelson IEEE Transactions on Instrumentation and Measurement 47 (1), 127-132, 1998 | 167 | 1998 |
10–1800-MHz dielectric properties of fresh apples during storage W Guo, SO Nelson, S Trabelsi, SJ Kays Journal of Food engineering 83 (4), 562-569, 2007 | 163 | 2007 |
Dielectric spectroscopy of watermelons for quality sensing SO Nelson, W Guo, S Trabelsi, SJ Kays Measurement Science and Technology 18 (7), 1887, 2007 | 161 | 2007 |
Factors influencing the dielectric properties of agricultural and food products SO Nelson, S Trabelsi Journal of Microwave Power and Electromagnetic Energy 46 (2), 93-107, 2012 | 151 | 2012 |
Phase-shift ambiguity in microwave dielectric properties measurements S Trabelsi, AW Kraszewski, SO Nelson IEEE Transactions on Instrumentation and Measurement 49 (1), 56-60, 2000 | 150 | 2000 |
Nondestructive microwave characterization for determining the bulk density and moisture content of shelled corn S Trabelsi, AW Kraszewski, SO Nelson Measurement Science and Technology 9 (9), 1548, 1998 | 130 | 1998 |
Dielectric spectroscopy of honeydew melons from 10 MHz to 1.8 GHz for quality sensing SO Nelson, S Trabelsi, SJ Kays Transactions of the ASABE 49 (6), 1977-1981, 2006 | 123 | 2006 |
Nondestructive sensing of physical properties of granular materials by microwave permittivity measurement S Trabelsi, SO Nelson IEEE Transactions on Instrumentation and Measurement 55 (3), 953-963, 2006 | 120 | 2006 |
Using cereal grain permittivity for sensing moisture content SO Nelson, AW Kraszewski, S Trabelsi, KC Lawrence IEEE transactions on instrumentation and measurement 49 (3), 470-475, 2000 | 118 | 2000 |
New calibration technique for microwave moisture sensors S Trabelsi, AW Kraszewski, SO Nelson IEEE Transactions on Instrumentation and Measurement 50 (4), 877-881, 2001 | 107 | 2001 |
Density-independent functions for on-line microwave moisture meters: a general discussion S Trabelsi, SO Nelson Measurement Science and Technology 9 (4), 570, 1998 | 107 | 1998 |
Microwave sensing of quality attributes of agricultural and food products S Trabelsi, SO Nelson IEEE instrumentation & measurement magazine 19 (1), 36-41, 2016 | 98 | 2016 |
Simultaneous determination of density and water content by microwave sensors S Trabelsi, AW Kraszewski, SO Nelson Electronics Letters 33 (10), 874-876, 1997 | 97 | 1997 |
Dielectric spectroscopy of wheat from 10 MHz to 1.8 GHz SO Nelson, S Trabelsi Measurement Science and Technology 17 (8), 2294, 2006 | 90 | 2006 |
Wheat permittivity measurements in free space AW Kraszewski, S Trabelsi, SO Nelson Journal of microwave power and electromagnetic energy 31 (3), 135-141, 1996 | 84 | 1996 |
Dielectric properties of dried vegetable powders and their temperature profile during radio frequency heating S Ozturk, F Kong, S Trabelsi, RK Singh Journal of Food Engineering 169, 91-100, 2016 | 81 | 2016 |
Method for the simultaneous and independent determination of moisture content and density of particulate materials from radio-frequency permittivity measurements SO Nelson, S Trabelsi, AW Kraszewski US Patent 6,147,503, 2000 | 81 | 2000 |
Dielectric properties of uncooked chicken breast muscles from ten to one thousand eight hundred megahertz H Zhuang, SO Nelson, S Trabelsi, EM Savage Poultry Science 86 (11), 2433-2440, 2007 | 80 | 2007 |