Double three-phase transmission lines are analyzed in this paper using a modal transformation model. The main attribute of this model is the use of a single real transformation matrix based on line geometrical characteristics and the Clarke matrix. Because of this, for any line point, the electrical values can be accessed for phase domain or mode domain using the considered transformation matrix and without convolution methods. For non-transposed symmetrical lines the errors between the model results and the exact modes are insignificant values. The eigenvector and eigenvalue analyses for transposed lines search the similarities among the three analyzed transposition types and the possible simplifications for a non-transposed case
A new model for multi-conductor transmission lines is proposed based on an alternative modal decoupl...
The results presented in this paper are based on a research about the application of approximated tr...
The phases of a transmission line are tightly coupled due to mutual impedances and admittances of th...
Eigenvector and eigenvalue analyses are carried out for double three-phase transmission lines, study...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
The phases of a transmission line are tightly coupled due to mutual impedances and admittances of th...
Single real transformation matrices are tested as phase-mode transformation matrices of typical symm...
For a typical non-symmetrical system with two parallel three phase transmission lines, modal transfo...
The objective of this letter is to propose an alternative modal representation of a nontransposed th...
This paper shows an alternative modal decomposition procedure of non ideally transposed three-phase ...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
The phases of a transmission line are tightly coupled due to mutual impedances and admittances of th...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
For a typical non-symmetrical system with two parallel three phase transmission lines, modal transfo...
A new model for multi-conductor transmission lines is proposed based on an alternative modal decoupl...
The results presented in this paper are based on a research about the application of approximated tr...
The phases of a transmission line are tightly coupled due to mutual impedances and admittances of th...
Eigenvector and eigenvalue analyses are carried out for double three-phase transmission lines, study...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
The phases of a transmission line are tightly coupled due to mutual impedances and admittances of th...
Single real transformation matrices are tested as phase-mode transformation matrices of typical symm...
For a typical non-symmetrical system with two parallel three phase transmission lines, modal transfo...
The objective of this letter is to propose an alternative modal representation of a nontransposed th...
This paper shows an alternative modal decomposition procedure of non ideally transposed three-phase ...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
The phases of a transmission line are tightly coupled due to mutual impedances and admittances of th...
The objective of this paper is to show an alternative representation in time domain of a non-transpo...
For a typical non-symmetrical system with two parallel three phase transmission lines, modal transfo...
A new model for multi-conductor transmission lines is proposed based on an alternative modal decoupl...
The results presented in this paper are based on a research about the application of approximated tr...
The phases of a transmission line are tightly coupled due to mutual impedances and admittances of th...