Hagglund, Tore Autor

Robust PID design based on QFT and convex-concave optimization

  • Mercader P.
  • Astrom K.
  • Banos A.
  • Hagglund T.

IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY - 1/3/2017

10.1109/tcst.2016.2562581

Número de citas: 51 (Scopus)

Revisiting the Ziegler-Nichols tuning rules for pi control - Part II The frequency response method

  • Hagglund T.
  • Astrom K.

Asian Journal of Control - 1/12/2004

10.1111/j.1934-6093.2004.tb00368.x

Número de citas: 82 (Scopus)

Revisiting the Ziegler-Nichols tuning rules for PI control

  • Hagglund T.
  • Astrom K.

Asian Journal of Control - 1/12/2002

10.1111/j.1934-6093.2002.tb00076.x

Número de citas: 212 (Scopus)

Revisiting the Ziegler-Nichols step response method for PID control

  • Åström K.
  • Hägglund T.

Journal of Process Control - 1/9/2004

10.1016/j.jprocont.2004.01.002

Número de citas: 711 (Scopus)
Open Access

Revisiting the simplified internal model control tuning rules for low-order controllers: feedforward controller

  • Rodríguez C.
  • Aranda-Escolástico E.
  • Guzmán J.L.
  • Berenguel M.
  • Hägglund T.

IET Control Theory & Applications - 13/08/2020

10.1049/iet-cta.2019.0823

Número de citas: 4 (Web of Science) 2 (Scopus)
Open Access

Revisiting the simplified IMC tuning rules for low-order controllers: Novel 2DoF feedback controller

  • Rodríguez C.
  • Aranda-Escolástico E.
  • Guzmán J.L.
  • Berenguel M.
  • Hägglund T.

IET Control Theory & Applications - 3/09/2020

10.1049/iet-cta.2019.0821

Número de citas: 8 (Web of Science) 5 (Scopus)

Quantitative analysis of influences of model plant mismatch on control loop behavior

  • Wang H.
  • Hägglund T.
  • Song Z.

INDUSTRIAL and ENGINEERING CHEMISTRY RESEARCH - 12/12/2012

10.1021/ie300834y

Número de citas: 12 (Scopus)

Qualitative shape analysis formalism for monitoring control loop performance

  • Rengaswamy R.
  • Hägglund T.
  • Venkatasubramanian V.

Engineering Applications of Artificial Intelligence - 1/1/2001

10.1016/s0952-1976(00)00051-8

Número de citas: 84 (Scopus)

Performance indices for feedforward control

  • Guzmán J.
  • Hägglund T.
  • Veronesi M.
  • Visioli A.

Journal of Process Control - 1/1/2015

10.1016/j.jprocont.2014.12.004

Número de citas: 16 (Web of Science) 17 (Scopus)

Performance comparison between PID and dead-time compensating controllers

  • Ingimundarson A.
  • Hägglund T.

Journal of Process Control - 1/10/2002

10.1016/s0959-1524(02)00017-3

Número de citas: 53 (Scopus)

Process control in practice

  • Hägglund T.

Process Control in Practice - 21/8/2023

10.1515/9783111104959

Número de citas:

Feedforward compensation for PID control loops

  • Guzmán J.
  • Hägglund T.
  • Visioli A.

Advances in Industrial Control - 1/1/2012

10.1007/978-1-4471-2425-2_7

Número de citas: 6 (Web of Science) 12 (Scopus)

Design methods: PID Control

  • Åstrom K.
  • Hagglund T.

The Control Handbook: Control System Fundamentals, Second Edition - 1/1/2017

10.1201/b10383

Número de citas: 1 (Scopus)

Automatic tuning of PID controllers

  • Hägglund T.
  • Åström K.

The Control Systems Handbook: Control System Advanced Methods, Second Edition - 1/1/2010

10.1201/b10384

Número de citas: 1 (Scopus)

Vehicle dynamics control and controller allocation for rollover prevention

  • Schofield B.
  • Hägglund T.
  • Rantzer A.

Proceedings of the IEEE International Conference on Control Applications - 1/12/2006

10.1109/cacsd-cca-isic.2006.4776639

Número de citas: 52 (Scopus)

Vehicle dynamics control and controller allocation for rollover prevention

  • Schofield B.
  • Hägglund T.
  • Rantzer A.

Proceedings of the IEEE International Conference on Control Applications - 1/12/2007

10.1109/cca.2006.285884

Número de citas: 6 (Scopus)

Understanding PID design through interactive tools

  • Guzmán J.
  • Hägglund T.
  • Åstrom K.
  • Dormido S.
  • Berenguel M.
  • Piguet Y.

IFAC Proceedings Volumes (IFAC-PapersOnline) - 1/1/2014

10.3182/20140824-6-za-1003.01328

Número de citas: 16 (Scopus)

Transfer function parameter identification by modified relay feedback

  • Soltesz K.
  • Hägglund T.
  • Åaström K.

Proceedings of the 2010 American Control Conference, ACC 2010 - 15/10/2010

10.1109/acc.2010.5531322

Número de citas: 14 (Scopus)

Towards a new generation of relay autotuners

  • Berner J.
  • Åström K.
  • Hägglund T.

IFAC Proceedings Volumes (IFAC-PapersOnline) - 1/1/2014

10.3182/20140824-6-za-1003.01591

Número de citas: 12 (Scopus)

Teaching control principles to industry practitioners

  • Soltesz K.
  • Johnsson C.
  • Hägglund T.

SEFI Annual Conference 2011 - 1/1/2011

Número de citas:

Teaching Control during the COVID-19 Pandemic

  • Guzmán J.L.
  • Žáková K.
  • Craig I.K.
  • Hägglund T.
  • Rivera D.E.
  • Normey-Rico J.E.
  • Moura-Oliveira P.
  • Wang L.
  • Serbezov A.
  • Sato T.
  • Beschi M.
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IFAC-PapersOnLine - 1/7/2022

10.1016/j.ifacol.2022.09.221

Número de citas: 1 (Web of Science)

Stiction compensation in control valves

  • Hägglund T.

ECC 1997 - European Control Conference - 8/4/1997

10.23919/ecc.1997.7082175

Número de citas: 6 (Scopus)

Steam pressure control during web breaks in the paper machine

  • Ekvall J.
  • Hägglund T.

Control Systems, Preprints, Conference - 18/10/2004

Número de citas: 1 (Scopus)

Software for PID design: Benefits and pitfalls

  • Garpinger O.
  • Hägglund T.
  • Cederqvist L.

IFAC Proceedings Volumes (IFAC-PapersOnline) - 1/12/2012

10.3182/20120328-3-it-3014.00024

Número de citas: 10 (Scopus)

Este autor no tiene patentes.

Corrigendum to “An industrial control loop decoupler for process control applications” [Control Eng. Pract. 123 (2022) 105138] (Control Engineering Practice (2022) 123, (S096706612200048X), (10.1016/j.conengprac.2022.105138))

  • Hägglund T.
  • Shinde S.
  • Theorin A.
  • Thomsen U.

CONTROL ENGINEERING PRACTICE - 1/8/2022

10.1016/j.conengprac.2022.105209

Número de citas:

Scopus: 36

Web of Science: 8

Scopus: 78

Web of Science: 7

Última actualización de los datos: 4/05/24 8:39
Próxima recolección programada: 11/05/24 3:00