An effective approach for unbalanced three-phase distribution power flow solutions is proposed in this paper. The special topological characteristics of distribution networks have been fully utilized to make the direct solution possible. Two matrices–the bus-injection to branch-current matrix and the branch-current to busvoltage matrix– and a simple matrix multiplication are used to obtain power flow solutions. Due to the distinctive solution techniques of the proposed method, the time-consuming LU decomposition and forward/backward substitution of the Jacobian matrix or admittance matrix required in the traditional power flow methods are no longer necessary. Therefore, the proposed method is robust and time-efficient. Test results demonstr...
Real-time operation, analysis and control of active distribution systems (DSs) mainly rely on accura...
The objective of this work is to study distributed approach for solving three-phase optimal power fl...
The objective of this report is to study distributed (decentralized) three phase optimal power flow ...
This paper presents a simple three phase power flow method for solution of three-phase unbalanced ra...
Two mismatch functions (power or current) and three coordinates (polar, Cartesian andcomplex form) r...
Abstract—This paper presents a new, efficient and robust three-phase load flow for unbalanced distri...
A thru tactic for unbalanced three-phase distribution load flow solutions is presented in this work....
An efficient load flow solution technique is required as a part of the distribution automation (DA) ...
An efficient load flow solution technique is required as a part of the distribution automation (DA) ...
This paper presents a new linear optimal power flow model for three-phase unbalanced electrical dist...
AbstractThe significant penetration of Distributed Generation(DG) systems in electrical power indust...
This paper presents three new contributions to power flow analysis of unbalanced three-phase distrib...
Distribution networks are typically unbalanced due to loads being unevenly distributed over the thre...
This paper presents a comparative analysis of six different iterative power flow methods applied to ...
Abstract:- This paper proposes an alternative approach for Newton-Raphson power flow calculation, wh...
Real-time operation, analysis and control of active distribution systems (DSs) mainly rely on accura...
The objective of this work is to study distributed approach for solving three-phase optimal power fl...
The objective of this report is to study distributed (decentralized) three phase optimal power flow ...
This paper presents a simple three phase power flow method for solution of three-phase unbalanced ra...
Two mismatch functions (power or current) and three coordinates (polar, Cartesian andcomplex form) r...
Abstract—This paper presents a new, efficient and robust three-phase load flow for unbalanced distri...
A thru tactic for unbalanced three-phase distribution load flow solutions is presented in this work....
An efficient load flow solution technique is required as a part of the distribution automation (DA) ...
An efficient load flow solution technique is required as a part of the distribution automation (DA) ...
This paper presents a new linear optimal power flow model for three-phase unbalanced electrical dist...
AbstractThe significant penetration of Distributed Generation(DG) systems in electrical power indust...
This paper presents three new contributions to power flow analysis of unbalanced three-phase distrib...
Distribution networks are typically unbalanced due to loads being unevenly distributed over the thre...
This paper presents a comparative analysis of six different iterative power flow methods applied to ...
Abstract:- This paper proposes an alternative approach for Newton-Raphson power flow calculation, wh...
Real-time operation, analysis and control of active distribution systems (DSs) mainly rely on accura...
The objective of this work is to study distributed approach for solving three-phase optimal power fl...
The objective of this report is to study distributed (decentralized) three phase optimal power flow ...