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Iconographic simulation and proportional-integral-plus (PIP) control of glasshouse climate

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Iconographic simulation and proportional-integral-plus (PIP) control of glasshouse climate. / Lees, M. J.; Young, P. C.; Tych, W. et al.
In: IEE Conference Publication, Vol. 2, No. 389, 1994, p. 1389-1394.

Research output: Contribution to Journal/MagazineConference articlepeer-review

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Lees MJ, Young PC, Tych W, Chotai A. Iconographic simulation and proportional-integral-plus (PIP) control of glasshouse climate. IEE Conference Publication. 1994;2(389):1389-1394. doi: 10.1049/cp:19940340

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Lees, M. J. ; Young, P. C. ; Tych, W. et al. / Iconographic simulation and proportional-integral-plus (PIP) control of glasshouse climate. In: IEE Conference Publication. 1994 ; Vol. 2, No. 389. pp. 1389-1394.

Bibtex

@article{e7aa5fc994534e9986e8e2e22ad6b630,
title = "Iconographic simulation and proportional-integral-plus (PIP) control of glasshouse climate",
abstract = "The paper shows how Proportional-Integral-Plus (PIP) control system designs can be developed on the basis of linearised, reduced order models derived from a complex nonlinear simulation model of a glasshouse micro-climate. Such designs, which can be in single input or multivariable form, provide logical successors to the more conventional PI and PID controllers used heretofore.",
author = "Lees, {M. J.} and Young, {P. C.} and W. Tych and A. Chotai",
year = "1994",
doi = "10.1049/cp:19940340",
language = "English",
volume = "2",
pages = "1389--1394",
journal = "IEE Conference Publication",
issn = "0537-9989",
publisher = "Institution of Engineering and Technology",
number = "389",
note = "Proceedings of the International Conference on CONTROL '94. Part 2 (of 2) ; Conference date: 21-03-1994 Through 24-03-1994",

}

RIS

TY - JOUR

T1 - Iconographic simulation and proportional-integral-plus (PIP) control of glasshouse climate

AU - Lees, M. J.

AU - Young, P. C.

AU - Tych, W.

AU - Chotai, A.

PY - 1994

Y1 - 1994

N2 - The paper shows how Proportional-Integral-Plus (PIP) control system designs can be developed on the basis of linearised, reduced order models derived from a complex nonlinear simulation model of a glasshouse micro-climate. Such designs, which can be in single input or multivariable form, provide logical successors to the more conventional PI and PID controllers used heretofore.

AB - The paper shows how Proportional-Integral-Plus (PIP) control system designs can be developed on the basis of linearised, reduced order models derived from a complex nonlinear simulation model of a glasshouse micro-climate. Such designs, which can be in single input or multivariable form, provide logical successors to the more conventional PI and PID controllers used heretofore.

UR - http://www.scopus.com/inward/record.url?scp=0028344446&partnerID=8YFLogxK

U2 - 10.1049/cp:19940340

DO - 10.1049/cp:19940340

M3 - Conference article

AN - SCOPUS:0028344446

VL - 2

SP - 1389

EP - 1394

JO - IEE Conference Publication

JF - IEE Conference Publication

SN - 0537-9989

IS - 389

T2 - Proceedings of the International Conference on CONTROL '94. Part 2 (of 2)

Y2 - 21 March 1994 through 24 March 1994

ER -