This paper proposes an optimal reactive power dispatching strategy in order to minimize the total losses in a DFIG based wind farm, including the copper loss of the generators, the losses of converters, filters, transformers and the losses of cables. The reactive power constraints, bus voltage constraints as well as other operational constraints are considered in the optimization problem. The proposed strategy is compared with proportional dispatching method. Simulation results validate the effectiveness of the proposed strategy
Wind power, as an alternative to fossil fuels, is plentiful, renewable, widely distributed, clean, p...
The doubly fed induction generator (DFIG) systems feature a significant amount of free power capacit...
Wind power, as an alternative to fossil fuels, is plentiful, renewable, widely distributed, clean, p...
An optimal reactive power dispatch strategy is proposed to minimize the total electrical losses of a...
This paper reviews and compares the performance of reactive power dispatch strategies for the loss m...
Reactive power control is an important control issue for distribution system operators due to increa...
Most wind farms currently being installed are based upon doubly fed induction generator (DFIG) or di...
AbstractA method for calculating reactive power limit of wind farm comprised of doubly-fed induction...
This paper proposes a grouped, reactive power optimization control strategy to maximize the active p...
The paper deals with control techniques for minimizing the operating loss of doubly fed induction ge...
This paper presents a comparative analysis between conventional optimal power flow (OPF) and voltage...
Distributed Generation (DG) has become an essential part of the smart grids due to the widespread in...
Distributed Generation (DG) has become an essential part of the smart grids due to the widespread in...
This paper presents an improved grid voltage control strategy for wind farms with doubly-fed inducti...
Abstract- In this paper, a novel control algorithm for minimizing the operating loss of doubly fed i...
Wind power, as an alternative to fossil fuels, is plentiful, renewable, widely distributed, clean, p...
The doubly fed induction generator (DFIG) systems feature a significant amount of free power capacit...
Wind power, as an alternative to fossil fuels, is plentiful, renewable, widely distributed, clean, p...
An optimal reactive power dispatch strategy is proposed to minimize the total electrical losses of a...
This paper reviews and compares the performance of reactive power dispatch strategies for the loss m...
Reactive power control is an important control issue for distribution system operators due to increa...
Most wind farms currently being installed are based upon doubly fed induction generator (DFIG) or di...
AbstractA method for calculating reactive power limit of wind farm comprised of doubly-fed induction...
This paper proposes a grouped, reactive power optimization control strategy to maximize the active p...
The paper deals with control techniques for minimizing the operating loss of doubly fed induction ge...
This paper presents a comparative analysis between conventional optimal power flow (OPF) and voltage...
Distributed Generation (DG) has become an essential part of the smart grids due to the widespread in...
Distributed Generation (DG) has become an essential part of the smart grids due to the widespread in...
This paper presents an improved grid voltage control strategy for wind farms with doubly-fed inducti...
Abstract- In this paper, a novel control algorithm for minimizing the operating loss of doubly fed i...
Wind power, as an alternative to fossil fuels, is plentiful, renewable, widely distributed, clean, p...
The doubly fed induction generator (DFIG) systems feature a significant amount of free power capacit...
Wind power, as an alternative to fossil fuels, is plentiful, renewable, widely distributed, clean, p...