Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively

The paper considers a survey of the research procedures and results due to invariant control method application perspective for operation quality advancement in several technological plants (wastewater biological treatment tanks and water steam production boilers), which operate under influence of o...

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Main Authors: Sniders A., Laizans A., Komass T.
Format: Article
Language:English
Published: Sciendo 2016-06-01
Series:Latvian Journal of Physics and Technical Sciences
Subjects:
Online Access:https://doi.org/10.1515/lpts-2016-0019
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spelling doaj-cc0a6c39ebad46018272a3aa0f16014a2021-09-06T19:20:06ZengSciendoLatvian Journal of Physics and Technical Sciences0868-82572016-06-01533344410.1515/lpts-2016-0019lpts-2016-0019Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances PreemptivelySniders A.0Laizans A.1Komass T.2Latvia University of Agriculture, Faculty of Engineering, Institute of Energetics, 5 J. Cakstes Blvd., Jelgava, LV-3001, LATVIALatvia University of Agriculture, Faculty of Engineering, Institute of Energetics, 5 J. Cakstes Blvd., Jelgava, LV-3001, LATVIALatvia University of Agriculture, Faculty of Engineering, Institute of Energetics, 5 J. Cakstes Blvd., Jelgava, LV-3001, LATVIAThe paper considers a survey of the research procedures and results due to invariant control method application perspective for operation quality advancement in several technological plants (wastewater biological treatment tanks and water steam production boilers), which operate under influence of organised and random disturbances. A specified subject of research is the simulation model of the multi-link invariant control system for steam pressure stabilisation in a steam boiler by preemptive compensation of steam load and feed water flow impact on output parameter (steam pressure), developed in MATLAB/SIMULINK. Simulation block-diagram of the steam boiler invariant control system, containing closed loop PID control circuit and open loop DPC circuit, has been composed on the basis of the designed mathematical model of the system components, disturbance compensation algorithms, and operational equation of the invariant control system. Comparative response of the steam boiler, operating under influence of fluctuating disturbances, with conventional PID control and using PID-DPC control with disturbance compensation controller DPC, has been investigated. Simulation results of invariant PID – DPC control system show that output parameter of the steam boiler - pressure remains practically constant under fluctuating disturbances due to a high-speed response of DPC controller.https://doi.org/10.1515/lpts-2016-0019controllerdisturbanceinvariant controlsimulation modelsteam boilertechnological plantwastewater aeration
collection DOAJ
language English
format Article
sources DOAJ
author Sniders A.
Laizans A.
Komass T.
spellingShingle Sniders A.
Laizans A.
Komass T.
Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively
Latvian Journal of Physics and Technical Sciences
controller
disturbance
invariant control
simulation model
steam boiler
technological plant
wastewater aeration
author_facet Sniders A.
Laizans A.
Komass T.
author_sort Sniders A.
title Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively
title_short Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively
title_full Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively
title_fullStr Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively
title_full_unstemmed Invariant Control of the Technological Plants to Compensate an Impact of Main Disturbances Preemptively
title_sort invariant control of the technological plants to compensate an impact of main disturbances preemptively
publisher Sciendo
series Latvian Journal of Physics and Technical Sciences
issn 0868-8257
publishDate 2016-06-01
description The paper considers a survey of the research procedures and results due to invariant control method application perspective for operation quality advancement in several technological plants (wastewater biological treatment tanks and water steam production boilers), which operate under influence of organised and random disturbances. A specified subject of research is the simulation model of the multi-link invariant control system for steam pressure stabilisation in a steam boiler by preemptive compensation of steam load and feed water flow impact on output parameter (steam pressure), developed in MATLAB/SIMULINK. Simulation block-diagram of the steam boiler invariant control system, containing closed loop PID control circuit and open loop DPC circuit, has been composed on the basis of the designed mathematical model of the system components, disturbance compensation algorithms, and operational equation of the invariant control system. Comparative response of the steam boiler, operating under influence of fluctuating disturbances, with conventional PID control and using PID-DPC control with disturbance compensation controller DPC, has been investigated. Simulation results of invariant PID – DPC control system show that output parameter of the steam boiler - pressure remains practically constant under fluctuating disturbances due to a high-speed response of DPC controller.
topic controller
disturbance
invariant control
simulation model
steam boiler
technological plant
wastewater aeration
url https://doi.org/10.1515/lpts-2016-0019
work_keys_str_mv AT snidersa invariantcontrolofthetechnologicalplantstocompensateanimpactofmaindisturbancespreemptively
AT laizansa invariantcontrolofthetechnologicalplantstocompensateanimpactofmaindisturbancespreemptively
AT komasst invariantcontrolofthetechnologicalplantstocompensateanimpactofmaindisturbancespreemptively
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