The optimization of energy systems is of crucial importance for a rational use of natural and economic resources and for minimizing their adverse effects on the environment. Optimizing such systems may be considered at three levels: synthesis (configuration), design …...
The optimization of energy systems is of crucial importance for a rational use of natural and economic resources and for minimizing their adverse effects on the environment. Optimizing such systems may be considered at three levels: synthesis (configuration), design …...
Introduction to Optimization
50mSystem Design and Analysis
38mWorkable system
40mSystem simulation
52mInformation flow diagrams
36mSuccessive substitution method
36mSuccessive substitution method contd...
45mSuccessive substitution method and Newton-Raphson method
41mNewton-Raphson method contd...
40mConvergence characteristics of Newton-Raphson method
43mNewton-Raphson method for multiple variables
46mSolution of system of linear equations
48mIntroduction to Curve fitting
46mExample for Lagrange interpolation
44mLagrange interpolation contd...
45mBest fit
48mLeast Square Regression
47mLeast Square Regression contd.....
48mLeast Square Regression contd.....
45mNon-linear Regression (Gauss - Newton Algorithm)
54mOptimization- Basic ideas
49mProperties of objective function and cardinal ideas in optimization
45mUnconstrained optimization
29mConstrained optimization problems
44mMathematical proof of the Lagrange multiplier method
45mTest for Maxima/ Minima
49mHandling in-equality constraints
39mKuhn-Tucker conditions contd...
51mUni-modal function and search methods
51mDichotomous search
49mFibonacci search method
54mReduction ratio of Fibonacci search method
50mIntroduction to multi-variable optimization
50mThe Conjugate gradient method
42mThe Conjugate gradient method contd.........
43mLinear programming
52mDynamic programming
51mGenetic Algorithms
54mGenetic Algorithms contd...
54mSimulated Annealing and Summary
1h 79 min