R
Rajesh Arora
Researcher at Amity University
Publications - 36
Citations - 570
Rajesh Arora is an academic researcher from Amity University. The author has contributed to research in topics: Multi-objective optimization & Photovoltaic system. The author has an hindex of 11, co-authored 36 publications receiving 407 citations. Previous affiliations of Rajesh Arora include Guru Gobind Singh Indraprastha University.
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Multi-objective thermo-economic optimization of solar parabolic dish Stirling heat engine with regenerative losses using NSGA-II and decision making
TL;DR: In this paper, the optimal values of various decision variables that simultaneously optimize power output, overall thermal efficiency and thermo-economic function of solar driven Stirling heat engine with regenerative heat losses, conducting thermal bridging losses using evolutionary algorithm based on second version of non-dominated sorting genetic algorithm (NSGA-II) in matrix laboratory (MATLAB) simulink environment.
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Multi-objective and multi-parameter optimization of two-stage thermoelectric generator in electrically series and parallel configurations through NSGA-II
TL;DR: It has been demonstrated that multi-objective optimization gives much lower difference between ideal and obtained solution, termed as deviation index, as compared to the dual/single objective optimization.
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Thermodynamic modeling and multi-objective optimization of two stage thermoelectric generator in electrically series and parallel configuration
TL;DR: In this article, a two-stage exo-reversible thermoelectric generator considering internal irreversibilties is developed in electrically series and electrically parallel configurations in matrix laboratory simulink environment based on finite time thermodynamic analysis.
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Soft computing based multi-objective optimization of Brayton cycle power plant with isothermal heat addition using evolutionary algorithm and decision making
TL;DR: Pareto optimal frontiers between dual objectives are obtained and the final optimal values of power output and thermal efficiency are chosen via LINMAP, fuzzy Bellman-Zadeh, Shannon's entropy and TOPSIS decision making approaches.
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Performance assessment of 186 kWp grid interactive solar photovoltaic plant in Northern India
TL;DR: In this paper, the grid interactive solar photovoltaic (PV) system is used to ensure the energy security for longer term. But, it is not suitable for large-scale deployment.