“Análisis comparativo del controlador I-PD versus controladores clásicos”

Within industrial processes, automation has gained crucial importance, driven by the need to optimize production through the use of advanced technologies. In this context, the classical PID controller has been widely adopted for its ability to enhance the response of industrial systems. However, des...

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Tác giả chính: Choto Reino, Anthony Israel (author)
Tác giả khác: Guanotasig Chiluisa, Erick Omar (author)
Định dạng: bachelorThesis
Được phát hành: 2024
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Truy cập trực tuyến:https://repositorio.utc.edu.ec/handle/123456789/12249
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author Choto Reino, Anthony Israel
author2 Guanotasig Chiluisa, Erick Omar
author2_role author
author_facet Choto Reino, Anthony Israel
Guanotasig Chiluisa, Erick Omar
author_role author
collection Repositorio Universidad Técnica de Cotopaxi
dc.contributor.none.fl_str_mv Corrales Bastidas, Byron Paúl
dc.creator.none.fl_str_mv Choto Reino, Anthony Israel
Guanotasig Chiluisa, Erick Omar
dc.date.none.fl_str_mv 2024-10-04T14:10:41Z
2024-10-04T14:10:41Z
2024-08
dc.format.none.fl_str_mv 112 páginas
application/pdf
dc.identifier.none.fl_str_mv Choto Reino Anthony Israel y Guanotasig Chiluisa Erick Omar (2024); “Análisis comparativo del controlador I-PD versus controladores clásicos”UTC, Latacunga. 112p
PI-002923
https://repositorio.utc.edu.ec/handle/123456789/12249
dc.language.none.fl_str_mv es
dc.publisher.none.fl_str_mv Ecuador: Latacunga: Universidad Técnica de Cotopaxi: (UTC)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:Repositorio Universidad Técnica de Cotopaxi
instname:Universidad Técnica de Cotopaxi
instacron:UTC
dc.subject.none.fl_str_mv CONTROLADORES
SINTONIZACIÓN
MODELO MATEMÁTICO
PROCESOS INDUSTRIALES
dc.title.none.fl_str_mv “Análisis comparativo del controlador I-PD versus controladores clásicos”
dc.type.none.fl_str_mv info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/bachelorThesis
description Within industrial processes, automation has gained crucial importance, driven by the need to optimize production through the use of advanced technologies. In this context, the classical PID controller has been widely adopted for its ability to enhance the response of industrial systems. However, despite its popularity and long-standing presence in the market, the traditional PID has certain disadvantages, such as generating overshoots and an aggressive response, which can be problematic in some processes. This research focuses on a comparative analysis between the classical PID controller and its I-PD variant, with a specific focus on temperature control through an embedded system, as well as in a flow process, where the variant stands out for its ability to handle process variations more effectively, demonstrating greater robustness against sudden changes and requiring less frequent adjustments. Through simulated and real tests using specialized software, it is shown that the I-PD variant outperforms the PID in several key aspects, offering smoother operation by reducing instabilities and overshoots of the process variable (PV) by 11.53% for temperature processes and 22.22% for flow processes, although its dead time increases by 66.6% compared to the PID in both cases. Despite this, the stabilization times in most processes are similar between both controllers.
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identifier_str_mv Choto Reino Anthony Israel y Guanotasig Chiluisa Erick Omar (2024); “Análisis comparativo del controlador I-PD versus controladores clásicos”UTC, Latacunga. 112p
PI-002923
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publishDate 2024
publisher.none.fl_str_mv Ecuador: Latacunga: Universidad Técnica de Cotopaxi: (UTC)
reponame_str Repositorio Universidad Técnica de Cotopaxi
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repository.name.fl_str_mv Repositorio Universidad Técnica de Cotopaxi - Universidad Técnica de Cotopaxi
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spelling “Análisis comparativo del controlador I-PD versus controladores clásicos”Choto Reino, Anthony IsraelGuanotasig Chiluisa, Erick OmarCONTROLADORESSINTONIZACIÓNMODELO MATEMÁTICOPROCESOS INDUSTRIALESWithin industrial processes, automation has gained crucial importance, driven by the need to optimize production through the use of advanced technologies. In this context, the classical PID controller has been widely adopted for its ability to enhance the response of industrial systems. However, despite its popularity and long-standing presence in the market, the traditional PID has certain disadvantages, such as generating overshoots and an aggressive response, which can be problematic in some processes. This research focuses on a comparative analysis between the classical PID controller and its I-PD variant, with a specific focus on temperature control through an embedded system, as well as in a flow process, where the variant stands out for its ability to handle process variations more effectively, demonstrating greater robustness against sudden changes and requiring less frequent adjustments. Through simulated and real tests using specialized software, it is shown that the I-PD variant outperforms the PID in several key aspects, offering smoother operation by reducing instabilities and overshoots of the process variable (PV) by 11.53% for temperature processes and 22.22% for flow processes, although its dead time increases by 66.6% compared to the PID in both cases. Despite this, the stabilization times in most processes are similar between both controllers.Within industrial processes, automation has gained crucial importance, driven by the need to optimize production through the use of advanced technologies. In this context, the classical PID controller has been widely adopted for its ability to enhance the response of industrial systems. However, despite its popularity and long-standing presence in the market, the traditional PID has certain disadvantages, such as generating overshoots and an aggressive response, which can be problematic in some processes. This research focuses on a comparative analysis between the classical PID controller and its I-PD variant, with a specific focus on temperature control through an embedded system, as well as in a flow process, where the variant stands out for its ability to handle process variations more effectively, demonstrating greater robustness against sudden changes and requiring less frequent adjustments. Through simulated and real tests using specialized software, it is shown that the I-PD variant outperforms the PID in several key aspects, offering smoother operation by reducing instabilities and overshoots of the process variable (PV) by 11.53% for temperature processes and 22.22% for flow processes, although its dead time increases by 66.6% compared to the PID in both cases. Despite this, the stabilization times in most processes are similar between both controllers.Ecuador: Latacunga: Universidad Técnica de Cotopaxi: (UTC)Corrales Bastidas, Byron Paúl2024-10-04T14:10:41Z2024-10-04T14:10:41Z2024-08info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/bachelorThesis112 páginasapplication/pdfChoto Reino Anthony Israel y Guanotasig Chiluisa Erick Omar (2024); “Análisis comparativo del controlador I-PD versus controladores clásicos”UTC, Latacunga. 112pPI-002923https://repositorio.utc.edu.ec/handle/123456789/12249esinfo:eu-repo/semantics/openAccessreponame:Repositorio Universidad Técnica de Cotopaxiinstname:Universidad Técnica de Cotopaxiinstacron:UTC2024-10-04T14:10:45Zoai:repositorio.utc.edu.ec:123456789/12249Institucionalhttp://repositorio.utc.edu.ec/Universidad públicahttps://www.utc.edu.ec/..Ecuador...opendoar:02026-03-08T03:39:59.854343Repositorio Universidad Técnica de Cotopaxi - Universidad Técnica de Cotopaxitrue
spellingShingle “Análisis comparativo del controlador I-PD versus controladores clásicos”
Choto Reino, Anthony Israel
CONTROLADORES
SINTONIZACIÓN
MODELO MATEMÁTICO
PROCESOS INDUSTRIALES
status_str publishedVersion
title “Análisis comparativo del controlador I-PD versus controladores clásicos”
title_full “Análisis comparativo del controlador I-PD versus controladores clásicos”
title_fullStr “Análisis comparativo del controlador I-PD versus controladores clásicos”
title_full_unstemmed “Análisis comparativo del controlador I-PD versus controladores clásicos”
title_short “Análisis comparativo del controlador I-PD versus controladores clásicos”
title_sort “Análisis comparativo del controlador I-PD versus controladores clásicos”
topic CONTROLADORES
SINTONIZACIÓN
MODELO MATEMÁTICO
PROCESOS INDUSTRIALES
url https://repositorio.utc.edu.ec/handle/123456789/12249