His Nonlinear system study frequently draws connections between adjacent fields such as Quantum mechanics. His Quantum mechanics study typically links adjacent topics like Nonlinear system. He undertakes multidisciplinary investigations into Artificial intelligence and Control system in his work. He performs multidisciplinary study on Control system and Artificial intelligence in his works. The study of Control theory (sociology) is intertwined with the study of Control (management) in a number of ways. He regularly ties together related areas like Control theory (sociology) in his Control (management) studies. His research on Sequence (biology) often connects related areas such as Genetics. Genetics is frequently linked to Sequence (biology) in his study. His research on Electrical engineering often connects related topics like Sampled data systems.
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Power System Dynamics and Stability: With Synchrophasor Measurement and Power System Toolbox
Peter W Sauer;Joe H Chow;M A Pai.
Power System Dynamics and Stability
Peter W. Sauer;M. A. Pai.
Energy function analysis for power system stability
M. A. Pai.
Trajectory sensitivity analysis of hybrid systems
I.A. Hiskens;M.A. Pai.
IEEE Transactions on Circuits and Systems I-regular Papers (2000)
Simulation and Optimization in an AGC System after Deregulation
V. Donde;M.A. Pai;I.A. Hiskens.
IEEE Transactions on Power Systems (2001)
Computer techniques in power system analysis
M. A. Pai.
Power system steady-state stability and the load-flow Jacobian
P.W. Sauer;M.A. Pai.
IEEE Transactions on Power Systems (1990)
Dynamic security-constrained rescheduling of power systems using trajectory sensitivities
T.B. Nguyen;M.A. Pai.
IEEE Transactions on Power Systems (2003)
Model reduction in power systems using Krylov subspace methods
D. Chaniotis;M.A. Pai.
IEEE Transactions on Power Systems (2005)
Power system stability : analysis by the direct method of Lyapunov
M. A. Pai.
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