Anikesh Kumar
National University of Singapore
7 Papers
Anikesh Kumar is an academic researcher from National University of Singapore. The author has contributed to research in topics: Computer science & PID controller. The author has an hindex of 1, co-authored 3 publications.
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Papers
Hydrogen value chain and fuel cells within hybrid renewable energy systems: Advanced operation and control strategies
TL;DR: The main contribution of this work is to demonstrate the feasibility of the hybrid energy system by providing the practitioners with a broad range of local control options, depending on operational realities and constraints.
63
Critical Assessment of Control Strategies for Industrial Systems with Input–Output Constraints
TL;DR: In this paper , a heat exchanger employed in a South-east Asian processing facility is evaluated for conformity with the approaches suggested in the recent literature and was found to be sound; hence, the unsatisfactory performance stems from the inherent limitations of the proportional integral control structure and/or improper tuning.
3
Simultaneous design of discrete-time inverse response predictor control systems
Anikesh Kumar,Min-Sen Chiu +1 more
TL;DR: In this paper , a data-based method for discrete-time predictive controller design for processes with inverse response using Virtual Reference Feedback Tuning (VRFT) design method is proposed.
Data-based Sequential Design of 2 × 2 Multi-loop PID Controllers
TL;DR: In this paper , a sequential design method for multi-loop PID controllers under the Virtual Reference Feedback Tuning (VRFT) methodology is introduced, and simulation studies are presented to illustrate the effect of different reference models on the proposed design for two-input two-output (TITO) systems.
VRFT-based digital controller design using a generalized second-order reference model
TL;DR: A generalized second-order reference model containing time delay and zero dynamics is derived and design equations using this reference model for two classes of linear controllers i.e. PID controller and a high-order controller with integrator are developed.