Zobrazeno 1 - 10
of 85
pro vyhledávání: '"Halder Kaushik"'
Publikováno v:
In Journal of the Franklin Institute December 2024 361(18)
Publikováno v:
In Chaos, Solitons and Fractals: the interdisciplinary journal of Nonlinear Science, and Nonequilibrium and Complex Phenomena September 2024 186
Autor:
Halder, Kaushik1 (AUTHOR), Das, Saptarshi2,3 (AUTHOR) saptarshi.das@ieee.org
Publikováno v:
PLoS ONE. 6/25/2024, Vol. 19 Issue 6, p1-29. 29p.
Akademický článek
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This paper derives new formulations for designing dominant pole placement based proportional-integral-derivative (PID) controllers to handle second order processes with time delays (SOPTD). Previously, similar attempts have been made for pole placeme
Externí odkaz:
http://arxiv.org/abs/1801.09238
Autor:
Das, Saptarshi, Halder, Kaushik
Publikováno v:
In Chaos, Solitons and Fractals: the interdisciplinary journal of Nonlinear Science, and Nonequilibrium and Complex Phenomena December 2022 165 Part 2
Autor:
Das, Saptarshi, Halder, Kaushik
Publikováno v:
Automation, Control, Energy and Systems (ACES), 2014 First International Conference on, Feb. 2014, Kolkata
This paper proposes a new strategy for missile attitude control using a hybridization of Linear Quadratic Gaussian (LQG), Loop Transfer Recovery (LTR), and Linear Quadratic Integral (LQI) control techniques. The LQG control design is carried out in t
Externí odkaz:
http://arxiv.org/abs/1611.09875
Publikováno v:
In Applied Mathematics and Computation 15 July 2021 401
Publikováno v:
Computer Communication and Informatics (ICCCI), 2013 International Conference on, Coimbatore, Jan. 2013
A weighted summation of Integral of Time Multiplied Absolute Error (ITAE) and Integral of Squared Controller Output (ISCO) minimization based time domain optimal tuning of fractional-order (FO) PID or PI{\lambda}D{\mu} controller is proposed in this
Externí odkaz:
http://arxiv.org/abs/1306.3680
Publikováno v:
Applied Mathematical Modelling, Volume 37, Issue 6, March 2013, Pages 4253-4268
The continuous and discrete time Linear Quadratic Regulator (LQR) theory has been used in this paper for the design of optimal analog and discrete PID controllers respectively. The PID controller gains are formulated as the optimal state-feedback gai
Externí odkaz:
http://arxiv.org/abs/1301.0931