36 citations · 102 across the 4 of their papers we have counts for
6 papers
Sensorless Real-Time Reduced Order Model Based Adaptive Maximum Power Tracking Pitch Controller for Grid Connected Wind Turbines
Abilash Thakallapelli, Sudipta Ghosh, Sukumar Kamalasadan
This paper presents a sensor-less maximum power tracking (MPT) pitch controller for grid connected Wind Turbine (WT). The main advantage of the proposed architecture is that the ap…
Measurement-Based Wide-Area Damping of Inter-Area Oscillations based on MIMO Identification
Abilash Thakallapelli, Sukumar Kamalasadan
Interconnected power grid exhibits oscillatory response after a disturbance in the system. One such type of oscillations, the inter-area oscillations has the oscillation frequency…
Real-time frequency based reduced order modeling of large power grid
Abilash Thakallapelli, Sudipta Ghosh, Sukumar Kamalasadan
Large power systems are complex and real-time modeling of the grid for electromagnetic simulation (EMT) studies is impractical. In general, there are methods that reduce large powe…
Development and Applicability of Online Passivity Enforced Wide-Band Multi-Port Equivalents For Hybrid Transient Simulation
Abilash Thakallapelli, Sudipta Ghosh, Sukumar Kamalasadan
This paper presents a method for developing single and multi-port frequency dependent network equivalent (FDNE) based on a passivity enforced online recursive least squares identif…
Coherency and Online Signal Selection Based Wide Area Control of Wind Integrated Power Grid
Abilash Thakallapelli, S J Hossain, Sukumar Kamalasadan
This paper introduces a novel method of designing wide area control (WAC) based on a discrete linear quadratic regulator and Kalman filtering based state-estimation that can be app…
Alternating Direction Method of Multipliers (ADMMs) Based Distributed Approach For Wide-Area Control
Abilash Thakallapelli, Sukumar Kamalasadan
In this paper, an alternating direction method of multipliers based novel distributed wide-area control architecture is proposed for damping the interarea oscillations. In this app…