A time-domain transmission measurement technique for extracting the complex propagation constant of a cross-linked polyethylene cable is proposed. For this extraction, a pulse transmitted through the cable is measured in the time domain and analyzed in the frequency domain. The proposed technique does not use an open termination for reflection, and therefore increases the upper frequency of the bandwidth for extraction; by reducing the pulse width, it decreases the measurement error as compared with an existing time-domain reflectometry method.X1110sciescopu
Attenuation phenomena in power cables increase with frequency, thus reducing the optimum bandwidth f...
Degradation of XLPE insulated power cables by water-trees is a primary cause of failure of these cab...
International audienceA new post-processing approach which aims at reducing the dispersion effect of...
Wave propagation characteristic of single phase medium voltage MV cross-linked-polyethylene (XLPE) c...
This work concentrates around to determine the velocities of propagation (VOPs) in three phase mediu...
A power cable model for partial discharge (PD)pulse propagation requires knowledge of all factors in...
A power cable model for partial discharge (PD) pulse propagation requires knowledge of all factors i...
On-line diagnostics of power system components is an important area since it allows the diagnostics ...
This thesis report describes a method for measuring frequency-dependent parameters of RG59/U cable p...
An accurate model of the high frequency behavior of a power cable is required for the precise simula...
A transmission line model of a power cable is required for the analysis of the behavior of high-freq...
The measurement of frequency dependent conductivity and permittivity in semiconducting materials was...
Characterizing materials used in Printed Circuit Board (PCB) manufacturing is becoming increasingly ...
The response of a cable can be used to analyze the variation of the material characteristics along i...
Cross-linked polyethylene (XLPE) power cable is commonly used as the medium for transmitting power s...
Attenuation phenomena in power cables increase with frequency, thus reducing the optimum bandwidth f...
Degradation of XLPE insulated power cables by water-trees is a primary cause of failure of these cab...
International audienceA new post-processing approach which aims at reducing the dispersion effect of...
Wave propagation characteristic of single phase medium voltage MV cross-linked-polyethylene (XLPE) c...
This work concentrates around to determine the velocities of propagation (VOPs) in three phase mediu...
A power cable model for partial discharge (PD)pulse propagation requires knowledge of all factors in...
A power cable model for partial discharge (PD) pulse propagation requires knowledge of all factors i...
On-line diagnostics of power system components is an important area since it allows the diagnostics ...
This thesis report describes a method for measuring frequency-dependent parameters of RG59/U cable p...
An accurate model of the high frequency behavior of a power cable is required for the precise simula...
A transmission line model of a power cable is required for the analysis of the behavior of high-freq...
The measurement of frequency dependent conductivity and permittivity in semiconducting materials was...
Characterizing materials used in Printed Circuit Board (PCB) manufacturing is becoming increasingly ...
The response of a cable can be used to analyze the variation of the material characteristics along i...
Cross-linked polyethylene (XLPE) power cable is commonly used as the medium for transmitting power s...
Attenuation phenomena in power cables increase with frequency, thus reducing the optimum bandwidth f...
Degradation of XLPE insulated power cables by water-trees is a primary cause of failure of these cab...
International audienceA new post-processing approach which aims at reducing the dispersion effect of...