This paper presents an alternative methodology for loading margin improvement and total real power losses reduction by using a continuation method. In order to attain this goal, a parameterizing equation based on the total real power losses and the equations of the reactive power at the slack and generation buses are added to the conventional power flow equations. The voltages at these buses are considered as control variables and a new parameter is chosen to reduce the real power losses in the transmission lines. The results show that this procedure leads to maximum loading point increase and consequently, in static voltage stability margin improvement. Besides, this procedure also takes to a reduction in the operational costs and, simulta...
Abstract:- Pattern of load sharing / generation scheduling that results in heavy flows tend to incur...
This paper proposes an economical generation direction for static voltage stability. The proposed ge...
This paper presents an efficient geometric parameterization technique for the continuation power flo...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This letter presents an alternative approach for reducing the total real power losses by using a con...
This letter presents an alternative approach for reducing the total real power losses by using a con...
The conventional Newton's method has been considered inadequate to obtain the maximum loading point ...
The conventional power flow method is considered to be inadequate to obtain the maximum loading poin...
New parameterization schemes have been proposed by the authors in Part I of this paper. In this part...
New parameterization schemes have been proposed by the authors in Part I of this paper. In this part...
Power systems operation becomes more important as the load demand increases all over the world. This...
The conventional Newton's method is considered to be inadequate for the computation of the maximum l...
The conventional Newton's method is considered to be inadequate for the computation of the maximum l...
With the penetration of distributed generation (DG) units, the power systems will face insecurity pr...
This paper introduces a parameterization technique to obtain complete P-V curves for electrical powe...
Abstract:- Pattern of load sharing / generation scheduling that results in heavy flows tend to incur...
This paper proposes an economical generation direction for static voltage stability. The proposed ge...
This paper presents an efficient geometric parameterization technique for the continuation power flo...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This letter presents an alternative approach for reducing the total real power losses by using a con...
This letter presents an alternative approach for reducing the total real power losses by using a con...
The conventional Newton's method has been considered inadequate to obtain the maximum loading point ...
The conventional power flow method is considered to be inadequate to obtain the maximum loading poin...
New parameterization schemes have been proposed by the authors in Part I of this paper. In this part...
New parameterization schemes have been proposed by the authors in Part I of this paper. In this part...
Power systems operation becomes more important as the load demand increases all over the world. This...
The conventional Newton's method is considered to be inadequate for the computation of the maximum l...
The conventional Newton's method is considered to be inadequate for the computation of the maximum l...
With the penetration of distributed generation (DG) units, the power systems will face insecurity pr...
This paper introduces a parameterization technique to obtain complete P-V curves for electrical powe...
Abstract:- Pattern of load sharing / generation scheduling that results in heavy flows tend to incur...
This paper proposes an economical generation direction for static voltage stability. The proposed ge...
This paper presents an efficient geometric parameterization technique for the continuation power flo...