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Impact of increased penetration of DFIG based wind turbine generators on transient and small signal stability of power systems
The targeted and current development of wind energy in various countries around the world reveals that wind power is the fastest growing power generation technology. Among the several wind generationExpand
Control strategy to mitigate the impact of reduced inertia due to doubly fed induction generators on large power systems
The present work is based on developing a control strategy to mitigate the impact of reduced inertia due to significant DFIG penetration in a large power system. The paper aims to design aExpand
Optimal DG placement in deregulated electricity market
TLDR
Two new methodologies for optimal placement of distributed generation in an optimal power flow (OPF) based wholesale electricity market are presented and bridges engineering aspects of system operation and economic aspects of market operation and act as good indicators for the placement of DG, especially in a market environment. Expand
Impact of Increased Penetration of DFIG-Based Wind Turbine Generators on Transient and Small Signal Stability of Power Systems
The targeted and current development of wind energy in various countries around the world reveals that wind power is the fastest growing power generation technology. Among the several wind generationExpand
Impact of DFIG based wind turbine generators on transient and small signal stability of power systems
The improved efficiency and controllability inherent with the doubly fed induction generators (DFIGs) is bringing this technology to the forefront of power industry. However, the dynamic behavior ofExpand
Supplementary control for damping power oscillations due to increased penetration of doubly fed induction generators in large power systems
This work investigates the impact of increased penetration of doubly fed induction generators (DFIGs) on electromechanical modes of oscillations of a large interconnected power system. The workExpand
Locating Distributed Generator in the LMP-based Electricity Market for Social Welfare Maximization
TLDR
Two new methodologies for the optimal placement of distributed generation (DG) in an optimal power flow (OPF) based wholesale electricity market are presented and an optimal placement and size is identified for maximum social welfare. Expand
Influence of distributed generation on congestion and LMP in competitive electricity market
TLDR
The paper lies on the groundwork that solution to optimal mix of generation and transmission resources can be achieved by addressing congestion and corresponding LMP. Expand
Control Strategy to Mitigate the Impact of Reduced Inertia Due to Doubly Fed Induction Generators on Large Power Systems
The present work is based on developing a control strategy to mitigate the impact of reduced inertia due to significant DFIG penetration in a large power system. The paper aims to design aExpand
Impact of Increased Penetration of DFIG Based Wind Turbine Generators on Rotor Angle Stability of Power Systems
TLDR
Results obtained on the large realistic power system indicate that the fre-ii quency nadir following a large power impact is effectively improved with the proposed control strategy, and better damping performance is observed when the DFIG is equipped with both the controllers. Expand
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