Critical Load Levels (CLLs) are load levels at which a new binding or non-binding constraint occurs. Successful prediction of CLLs is very useful for identifying congestion and price change patterns. This paper extends the existing work to completely solve the problem of predicting the Previous CLL and Next CLL around the present operating point for an AC Optimal Power Flow (ACOPF) framework. First, quadratic variation patterns of system statuses such as generator dispatches, line flows, and Lagrange multipliers associated with binding constraints with respect to load changes are revealed through a numerical study of polynomial curve-fitting. Second, in order to reduce the intensive computation with the quadratic curve-fitting approach in c...
Newly, there has been significant research interest in the exact solution of the AC optimal power fl...
This thesis analyzes and tests some new solution techniques for the optimal power flow problem. This...
The computation of the maximun loading point (MLP) is crucial to power systems operation and control...
This paper presents the following research works. First, numerical simulation is applied to verify t...
In market-based planning and operation, it is always useful to have the information of generation di...
An accurate estimation of critical load levels (CLLs) is beneficial in evaluating the confidence lev...
Abstract: Power flow solutions form the basis for computer-based steady-state network operation and...
This work proposes a full AC optimal power flow (ACOPF) model considering variable impedance-based f...
Linear optimal power flow (LOPF) algorithms use a linearization of the alternating current (AC) load...
The objective of an Optimal Power Flow (OPF) algorithm is to find the steady-state operation point o...
In ill conditioned power systems, the classical Optimal Multiplier Load Flow Method (OMLFM) can only...
The objective of this work is to design a suitable rule for the energy reference selection in the AC...
Conventional optimization technique suggests that marginal unit generation sensitivity (MUGS) may be...
With increasingly large scale of intermittent and non-dispatchable resources being integrated into p...
The objective of this work is to design a suitable rule for the energy reference selection in the AC...
Newly, there has been significant research interest in the exact solution of the AC optimal power fl...
This thesis analyzes and tests some new solution techniques for the optimal power flow problem. This...
The computation of the maximun loading point (MLP) is crucial to power systems operation and control...
This paper presents the following research works. First, numerical simulation is applied to verify t...
In market-based planning and operation, it is always useful to have the information of generation di...
An accurate estimation of critical load levels (CLLs) is beneficial in evaluating the confidence lev...
Abstract: Power flow solutions form the basis for computer-based steady-state network operation and...
This work proposes a full AC optimal power flow (ACOPF) model considering variable impedance-based f...
Linear optimal power flow (LOPF) algorithms use a linearization of the alternating current (AC) load...
The objective of an Optimal Power Flow (OPF) algorithm is to find the steady-state operation point o...
In ill conditioned power systems, the classical Optimal Multiplier Load Flow Method (OMLFM) can only...
The objective of this work is to design a suitable rule for the energy reference selection in the AC...
Conventional optimization technique suggests that marginal unit generation sensitivity (MUGS) may be...
With increasingly large scale of intermittent and non-dispatchable resources being integrated into p...
The objective of this work is to design a suitable rule for the energy reference selection in the AC...
Newly, there has been significant research interest in the exact solution of the AC optimal power fl...
This thesis analyzes and tests some new solution techniques for the optimal power flow problem. This...
The computation of the maximun loading point (MLP) is crucial to power systems operation and control...