Determination of phase sequence and voltage level of double-circuit overhead conductors is investigated using non-contact sensors situated on a moving platform at ground level. Based on the investigation of the electric field beneath double-circuit transmission lines through Finite Element Analysis (FEA) simulations and laboratory experiments with a scale model, a determination methodology is proposed. Experiments taken beneath 400 kV double-circuit transmission lines are presented in detail. Analysis of the experimental results shows that the proposed determination methodology can successfully evaluate the phase sequence arrangement and voltage level of high-voltage double circuit conductors
Positive, negative and zero sequence kilometric impedances are the first steps for power flow and sh...
The verification of the limits of the population\u2019s exposure to the magnetic field generated by ...
This paper presents an environmental analysis of the electric field due to MV overhead lines support...
This paper describes how the phase sequence and voltage level (132 kV, 275 kV or 400 kV) of single-c...
Abstract:- This paper proposes a mathematical model of electric and magnetic fields caused by high v...
This paper looks at the determination of the phase sequence of an overhead line from field measureme...
Summary form only given. This paper proposed a novel noncontact technology of operation-state monito...
In this paper, a voltage transducer is proposed based on the distribution of electric field around h...
A voltage transformer, as voltage signal detection equipment, plays an important role in a power sys...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Application of open-air sensors is an attractive option for detecting switching over-voltages as the...
A low cost, easy to install high-voltage measuring system is described for open air substations and ...
Abstract—This paper proposed a novel noncontact technology of operation-state monitoring based on ma...
Abstract:- The paper presents the measurements that the author has done in the South- West area of R...
At present, the biggest problem faced by short-distance double-circuit parallel lines is the three-p...
Positive, negative and zero sequence kilometric impedances are the first steps for power flow and sh...
The verification of the limits of the population\u2019s exposure to the magnetic field generated by ...
This paper presents an environmental analysis of the electric field due to MV overhead lines support...
This paper describes how the phase sequence and voltage level (132 kV, 275 kV or 400 kV) of single-c...
Abstract:- This paper proposes a mathematical model of electric and magnetic fields caused by high v...
This paper looks at the determination of the phase sequence of an overhead line from field measureme...
Summary form only given. This paper proposed a novel noncontact technology of operation-state monito...
In this paper, a voltage transducer is proposed based on the distribution of electric field around h...
A voltage transformer, as voltage signal detection equipment, plays an important role in a power sys...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Application of open-air sensors is an attractive option for detecting switching over-voltages as the...
A low cost, easy to install high-voltage measuring system is described for open air substations and ...
Abstract—This paper proposed a novel noncontact technology of operation-state monitoring based on ma...
Abstract:- The paper presents the measurements that the author has done in the South- West area of R...
At present, the biggest problem faced by short-distance double-circuit parallel lines is the three-p...
Positive, negative and zero sequence kilometric impedances are the first steps for power flow and sh...
The verification of the limits of the population\u2019s exposure to the magnetic field generated by ...
This paper presents an environmental analysis of the electric field due to MV overhead lines support...