The modeling of single core cable has an important influence on the calculation of cable sheath cross-connected grounding current and voltage. A suitable equivalent circuit can greatly reduce the complexity of the model. In this paper, the theoretical calculation of π type equivalent circuit of cable is analyzed, and the equivalent circuit of cable sheath grounding system is analyzed. Then the calculation equation of sheath circulation and induced voltage is obtained. Finally, by simulating two kinds of sheath grounding faults, two kinds of sheath grounding fault location are summarized
Simple compact models for combined overhead-cable lines supplying a substation are presented as an e...
This paper aims at checking the possibility that cable sheath faults in unipolar three-phase HV and ...
This paper considers electric shock hazard due to induced sheath voltages in 110 kV power cables. Th...
The modeling of single core cable has an important influence on the calculation of cable sheath cros...
In this article, the authors discuss a simulation model to study the effect of cross-bonding of meta...
This two-part paper proposes a revised method for calculating high voltage (HV) cable sheath current...
In this paper, 22 equations for high voltage cable sheaths are simulated in one model. The model out...
Cable sheath currents can be utilized to identify cable faults at an early stage and avoid unplanned...
In this paper, the implementation of a simulation model for studying the effect of cross-bonding of ...
Sheath voltage limiters (SVL) are a critical component of an underground cable's protection system. ...
The single-core alternating current (AC) submarine cable can be provided with an outer sheath that i...
Underground cable is commonly used in situation where power need to be transmitted across river or s...
For high-voltage (HV) AC cable transmission systems, the metal sheaths of three separate single-core...
This paper discusses modelling of high voltage AC underground cables. For long cables, when crossbon...
When lead sheathed single conductor cables are used on alternating current circuits new problems are...
Simple compact models for combined overhead-cable lines supplying a substation are presented as an e...
This paper aims at checking the possibility that cable sheath faults in unipolar three-phase HV and ...
This paper considers electric shock hazard due to induced sheath voltages in 110 kV power cables. Th...
The modeling of single core cable has an important influence on the calculation of cable sheath cros...
In this article, the authors discuss a simulation model to study the effect of cross-bonding of meta...
This two-part paper proposes a revised method for calculating high voltage (HV) cable sheath current...
In this paper, 22 equations for high voltage cable sheaths are simulated in one model. The model out...
Cable sheath currents can be utilized to identify cable faults at an early stage and avoid unplanned...
In this paper, the implementation of a simulation model for studying the effect of cross-bonding of ...
Sheath voltage limiters (SVL) are a critical component of an underground cable's protection system. ...
The single-core alternating current (AC) submarine cable can be provided with an outer sheath that i...
Underground cable is commonly used in situation where power need to be transmitted across river or s...
For high-voltage (HV) AC cable transmission systems, the metal sheaths of three separate single-core...
This paper discusses modelling of high voltage AC underground cables. For long cables, when crossbon...
When lead sheathed single conductor cables are used on alternating current circuits new problems are...
Simple compact models for combined overhead-cable lines supplying a substation are presented as an e...
This paper aims at checking the possibility that cable sheath faults in unipolar three-phase HV and ...
This paper considers electric shock hazard due to induced sheath voltages in 110 kV power cables. Th...