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Nand
works in the area of developing
Reliability Solutions for
real-time grid management and
monitoring. He has extensive
experience in power systems
control, operations, EMS and
SCADA systems. He was formerly
with Florida Power and Light
where he was Supervisor of
Network and Scheduling
Applications Energy Control
Center. Nand works with the EPG
development team and users to
design applications and prepare
functional specifications
consistent with user
requirements.
Nand
has taught graduate and under
graduate courses in Power
Systems and Control Systems at
the University of Roorkee (India),University
of Miami and Florida
International University, Miami
and Short courses at Georgia
Tech. and Florida International
University. Nand’s education
includes:
Ph.D. - Power System Controls,
University of Toronto, Canada.
Thesis Topic: Automatic
Generation Control of a Large
Multi-Area Interconnected Power
Systems By Optimal Decentralized
Control, Under the supervision
of Prof. E.J. Davison
M.S. - Control Systems,
University of Roorkee, India
B.E.
- Electrical Engineering, Agra
University, India
Nand
has published many technical
papers in IEEE and other
professional forums on a variety
of topics including:
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Implementation of the Import
Optimization Function for
Florida Power and Light |
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Single-Pass State Estimation
Techniques for the Internal
and External Network
Solutions |
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State Estimation Based
External Network Solutions;
Field Testing, IEEE Power
Apparatus and Systems |
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Reactive Switching
Simulation at Florida
Power and Light System
Control Center |
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Automatic Generation Control
of a Large Electric Power
Systems Using Multivariable
Tuning Regulators Method for
Unknown Systems |
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The Optimal Decentralized
Control of a Large Power
System: Load and Frequency
Control |
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Large Scale Interconnected
System Description and
Reduction to State Space
Form |
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Automatic Generation Control
of a Large Multi Area
Interconnected Power System
By Optimal Decentralized
Control |
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An Algorithm for the
Simulation of Large Scale
Systems Described my Mixed
Algebraic and Differential
Equations |
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Design and Performance of
Optimum Power Series Filters |
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