This paper introduces a parameterization technique to obtain complete P-V curves for electrical power systems under various conditions, including contingencies (N-1, N-1 severe, and N-2) as well as normal operating conditions N-0 (pre-contingency). The distinct feature of this methodology lies in the utilization of the new (θk, Vk) plane for constructing the P-V curve. In this new framework, the solution trajectory exhibits a linear characteristic in the vicinity of the maximum loading point (MLP), effectively mitigating any numerical challenges. Another crucial aspect is the point denoted as the center of the set of lines, point O (λ0, Vk0). This point can be adjusted along the ordinate axis, further enhancing the method’s ability to achie...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This paper proposes and tests new parameters, namely the voltage magnitudes, phase angles and the to...
This paper presents an efficient geometric parameterization technique for the continuation power flo...
Continuation methods have been long used in P-V curve tracing due to their efficiency in the resolut...
Continuation methods have been shown as efficient tools for solving ill-conditioned cases, with clos...
Continuation methods have been shown as efficient tools for solving ill-conditioned cases, with clos...
The conventional Newton's method has been considered inadequate to obtain the maximum loading point ...
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...
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...
This work proposes two new geometric parameterization techniques that based on analysis of solutions...
This paper provides a contribution to the contingency analysis of electric power systems under stead...
The conventional power flow method is considered to be inadequate to obtain the maximum loading poin...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This paper proposes and tests new parameters, namely the voltage magnitudes, phase angles and the to...
This paper presents an efficient geometric parameterization technique for the continuation power flo...
Continuation methods have been long used in P-V curve tracing due to their efficiency in the resolut...
Continuation methods have been shown as efficient tools for solving ill-conditioned cases, with clos...
Continuation methods have been shown as efficient tools for solving ill-conditioned cases, with clos...
The conventional Newton's method has been considered inadequate to obtain the maximum loading point ...
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...
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...
This work proposes two new geometric parameterization techniques that based on analysis of solutions...
This paper provides a contribution to the contingency analysis of electric power systems under stead...
The conventional power flow method is considered to be inadequate to obtain the maximum loading poin...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This paper presents an alternative methodology for loading margin improvement and total real power l...
This paper proposes and tests new parameters, namely the voltage magnitudes, phase angles and the to...