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ANN-GA based optimization of a high ash coal-fired supercritical power plant
, Ajit Kumar Kolar
Published in Elsevier Ltd
2011
Volume: 88
   
Issue: 12
Pages: 4867 - 4873
Abstract
The efficiency of coal-fired power plant depends on various operating parameters such as main steam/reheat steam pressures and temperatures, turbine extraction pressures, and excess air ratio for a given fuel. However, simultaneous optimization of all these operating parameters to achieve the maximum plant efficiency is a challenging task. This study deals with the coupled ANN and GA based (neuro-genetic) optimization of a high ash coal-fired supercritical power plant in Indian climatic condition to determine the maximum possible plant efficiency. The power plant simulation data obtained from a flow-sheet program, " Cycle-Tempo" is used to train the artificial neural network (ANN) to predict the energy input through fuel (coal). The optimum set of various operating parameters that result in the minimum energy input to the power plant is then determined by coupling the trained ANN model as a fitness function with the genetic algorithm (GA). A unit size of 800. MWe currently under development in India is considered to carry out the thermodynamic analysis based on energy and exergy. Apart from optimizing the design parameters, the developed model can also be used for on-line optimization when quick response is required. Furthermore, the effect of various coals on the thermodynamic performance of the optimized power plant is also determined. © 2011 Elsevier Ltd.
About the journal
JournalData powered by TypesetApplied Energy
PublisherData powered by TypesetElsevier Ltd
ISSN03062619
Open AccessNo
Concepts (41)
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    Coal
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    Computer simulation
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    Exergy
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    Genetic algorithms
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    Neural networks
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    Optimization
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    Steam power plants
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    Thermoanalysis
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    Artificial neural network
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    Climatic conditions
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    COAL-FIRED POWER PLANT
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    Design parameters
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    Developed model
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    Energy
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    ENERGY AND EXERGY
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    ENERGY INPUTS
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    EXCESS AIR RATIOS
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    EXTRACTION PRESSURE
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    Fitness functions
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    High ash coal
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    Minimum energy
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    NEURO-GENETIC
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    Online optimization
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    Operating parameters
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    PLANT EFFICIENCY
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    PLANT SIMULATION
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    Quick response
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    Simultaneous optimization
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    STEAM PRESSURES
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    SUPERCRITICAL POWER PLANT
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    THERMO DYNAMIC ANALYSIS
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    THERMODYNAMIC PERFORMANCE
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    Fossil fuel power plants
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    Ash
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    CLIMATE CONDITIONS
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    COAL-FIRED POWER PLANT
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    Developing world
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    Energy efficiency
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    Genetic algorithm
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    Thermodynamics
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    India