G
Gade Pandu Rangaiah
Researcher at National University of Singapore
Publications - 282
Citations - 6739
Gade Pandu Rangaiah is an academic researcher from National University of Singapore. The author has contributed to research in topics: Multi-objective optimization & Global optimization. The author has an hindex of 42, co-authored 277 publications receiving 5737 citations. Previous affiliations of Gade Pandu Rangaiah include Indian Institute of Technology Kanpur & Nanyang Technological University.
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A computational study of the effect of lamp arrangements on the performance of ultraviolet water disinfection reactors
TL;DR: In this paper, the effects of different lamp arrangements on UV disinfection reactor performance have not been well-studied, and the authors used computational fluid dynamics simulation software FLUENT to simulate microorganism particle motion in different UV water disinfection reactors.
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Simulation and Multiobjective Optimization of an Industrial Hydrogen Plant Based on Refinery Off-Gas
TL;DR: In this article, a rigorous model was developed for simulating an existing industrial hydrogen plant based on refinery off-gas, which was made up of liquefied petroleum gas and offgas from the membrane separation unit in a petroleum refinery.
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Identification and predictive control of a multistage evaporator
TL;DR: In this paper, a recurrent neural network-based nonlinear model predictive control (NMPC) scheme in parallel with PI control loops is developed for a simulation model of an industrial-scale five-stage evaporator, which is tested with setpoint tracking and disturbance rejection problems on the plant while control performance is compared with that of PI controllers, a simplified mechanistic model-based NMPC developed in previous work and a linear model predictive controller (LMPC).
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Experimental evaluation of an augmented IMC for nonlinear systems
TL;DR: In this paper, the authors presented a detailed study on real-time control of an open-loop stable single-input-single-output (SISO) nonlinear system by AuIMC.
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Heat-pump assisted distillation versus double-effect distillation for bioethanol recovery followed by pressure swing adsorption for bioethanol dehydration
TL;DR: In this article, double-effect distillation and heat-pump assisted distillation (HPAD-PSA) were proposed and evaluated for bioethanol recovery from the fermentation broth, and multi-objective optimization was performed for minimizing fixed capital investment and annual operating cost.