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Modelling and PIP control design for open top chambers

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Modelling and PIP control design for open top chambers. / Lees, M. J.; Taylor, C. James; Young, Peter C. et al.
In: Control Engineering Practice, Vol. 6, No. 10, 10.1998, p. 1209-1216.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

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Lees MJ, Taylor CJ, Young PC, Chotai A. Modelling and PIP control design for open top chambers. Control Engineering Practice. 1998 Oct;6(10):1209-1216. doi: 10.1016/S0967-0661(98)00089-6

Author

Lees, M. J. ; Taylor, C. James ; Young, Peter C. et al. / Modelling and PIP control design for open top chambers. In: Control Engineering Practice. 1998 ; Vol. 6, No. 10. pp. 1209-1216.

Bibtex

@article{e3162aa0f61047d4b8b78b1ffd635926,
title = "Modelling and PIP control design for open top chambers",
abstract = "The paper first describes the identification of a control model for carbon dioxide concentration in an open-top chamber (OTC) used in plant physiology atmospheric change experiments. This model is then employed in the design of a gain-scheduled controller utilising the Proportional-Integral-Plus (PIP) control design methodology developed by Young et al. (1987). The system has been evaluated in a number of field trials, yielding good control, well within the required design specifications.",
keywords = "Model-based control, predictive control, optimal control, scheduling algorithms, pulse-width modulation, time delay, feedforward control, Monte Carlo simulation",
author = "Lees, {M. J.} and Taylor, {C. James} and Young, {Peter C.} and Arunkumar Chotai",
year = "1998",
month = oct,
doi = "10.1016/S0967-0661(98)00089-6",
language = "English",
volume = "6",
pages = "1209--1216",
journal = "Control Engineering Practice",
issn = "0967-0661",
publisher = "Elsevier Limited",
number = "10",

}

RIS

TY - JOUR

T1 - Modelling and PIP control design for open top chambers

AU - Lees, M. J.

AU - Taylor, C. James

AU - Young, Peter C.

AU - Chotai, Arunkumar

PY - 1998/10

Y1 - 1998/10

N2 - The paper first describes the identification of a control model for carbon dioxide concentration in an open-top chamber (OTC) used in plant physiology atmospheric change experiments. This model is then employed in the design of a gain-scheduled controller utilising the Proportional-Integral-Plus (PIP) control design methodology developed by Young et al. (1987). The system has been evaluated in a number of field trials, yielding good control, well within the required design specifications.

AB - The paper first describes the identification of a control model for carbon dioxide concentration in an open-top chamber (OTC) used in plant physiology atmospheric change experiments. This model is then employed in the design of a gain-scheduled controller utilising the Proportional-Integral-Plus (PIP) control design methodology developed by Young et al. (1987). The system has been evaluated in a number of field trials, yielding good control, well within the required design specifications.

KW - Model-based control

KW - predictive control

KW - optimal control

KW - scheduling algorithms

KW - pulse-width modulation

KW - time delay

KW - feedforward control

KW - Monte Carlo simulation

U2 - 10.1016/S0967-0661(98)00089-6

DO - 10.1016/S0967-0661(98)00089-6

M3 - Journal article

VL - 6

SP - 1209

EP - 1216

JO - Control Engineering Practice

JF - Control Engineering Practice

SN - 0967-0661

IS - 10

ER -