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Kavasseri, Rajesh - Department of Electrical and Computer Engineering, North Dakota State University
arXiv:physics/0411194v120Nov2004 Evidence of crossover phenomena in wind speed data
Abstract--Estimating the dynamic state variables of a synchronous generator has been a long standing research
arXiv:physics/0604022v14Apr2006 A Qualitative Description of Boundary Layer
International Journal of Network Security, Vol.11, No.1, PP.2332, July 2010 23 Nonce Generation For The Digital Signature
A note on the global controllability of a class of planar nonlinear Parthasarathi Nag and Rajesh G. Kavasseri
arXiv:cond-mat/0411534v120Nov2004 A Multifractal Description of Wind Speed Records
arXiv:cond-mat/0411543v121Nov2004 Minimizing the effect of sinusoidal trends in detrended fluctuation
Improving `Objective' Digital Images With Neuronal Processing : A Computational Approach
A Method for Flicker Severity Evaluation using the Hadamard Prakash Ranganathan and Rajesh G. Kavasseri
arXiv:nlin.CD/0411045v120Nov2004 Analysis of Bifurcations in a Power System Model with Excitation
dated May 18, 2000 Preliminary report on PSS tuning studies -3
dated April 7, 2001 Preliminary report on PSS tuning studies -4
Graduate Handbook Department of Electrical & Computer Engineering
Steady State Analysis of an induction generator infinite bus system
Analytical Prediction of Subharmonic Oscillations in a Ferroresonant Circuit
Bifurcations in a synaptically coupled Morris-Lecar neuron model Rajesh G Kavasseri
STEADY STATE ANALYSIS OF INDUCTION GENERATOR INFINITE BUS SYSTEMS
arXiv:q-bio.NC/0603035v129Mar2006 Synchronization in Electrically Coupled Neural Networks
An Algebraic Geometric Approach to Analyze Static Voltage Collapse in a Simple Power System
Joint Placement of Phasor and Conventional Power Flow Measurements for Fault
I THIS IS THE AUTHOR'S DRAFT. THE DEFINITIVE VERSION RESTS WITH THE PUBLISHER. 1 Reactive Power Management of a DFIG Wind
TO APPEAR AT PES GM 2010. THIS IS AUTHORS' COPY. COPYRIGHT IS HELD BY IEEE. 1 Efficient Extreme Event Screening for Power
I THIS IS THE AUTHOR'S DRAFT. THE DEFINITIVE VERSION RESTS WITH THE PUBLISHER. 1 Sensitivity Analysis based Sliding Mode Control for