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Optimal Short-Term Scheduling of Large-Scale Power Systems
Dimitri P. Bertsekas
, Gregory S. Lauer
, Nils R. Sandell
, Thomas A. Posbergh
Electrical and Computer Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
153
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Scopus citations
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Keyphrases
Large-scale Dynamics
100%
Short-term Scheduling
100%
Large-scale Power System
100%
Resource Allocation Problem
50%
Lagrangian Relaxation
50%
Computational Requirements
50%
Electric Power Systems
50%
Solution Methodology
50%
Duality Gap
50%
Dynamic Scheduling
50%
Generating Unit
50%
Mixed Integer Programming Problem
50%
Relaxation Optimization
50%
Unit Commitment Problem
50%
Dynamic Resources
50%
Integer Variables
50%
Reliable Solution
50%
Nondifferentiable Optimization
50%
Optimal Unit Commitment
50%
Number of Units
50%
Conventional Formulations
50%
Mathematics
Integer
100%
Lagrangian
100%
Duality Gap
100%
Integer Programming Problem
100%
Unit Increase
100%
Nondifferentiable Optimization
100%
Engineering
Power Engineering
100%
Unit Commitment
100%
Broader Class
50%
Electric Power Systems
50%
Resource Allocation Problem
50%
Practical Problem
50%
Lagrangian Relaxation
50%
Generating Unit
50%
Social Sciences
Resource Allocation
100%
Electric Power
100%
Mixed-Integer Programming
100%
Lagrangian Relaxation
100%
Computer Science
Unit Commitment
100%
Allocation Problem
50%
Resource Allocation
50%
Time Constraint
50%
Mixed Integer Programming
50%
Lagrangian Relaxation
50%