Process control design for industrial applications:
Gespeichert in:
Format: | Elektronisch E-Book |
---|---|
Sprache: | English |
Veröffentlicht: |
London, UK
ISTE, Ltd.
[2017]
|
Schriftenreihe: | Robotics series
|
Schlagworte: | |
Online-Zugang: | FRO01 FWS01 FWS02 UBG01 URL des Erstveröffentlichers |
Beschreibung: | Includes bibliographical references and index Cover; Title Page; Copyright; Contents; Preface; List of Notations and Acronyms; 1. Introduction -- Models and Dynamic Systems; 1.1. Overview; 1.2. Industrial process modeling; 1.3. Model classes; 1.3.1. State space models; 1.3.2. Input-output models; 2. Linear Identification of Closed-Loop Systems; 2.1. Overview of system identification; 2.2. Framework; 2.3. Preliminary identification of a CL process; 2.3.1. Multivariable linear identification methods; 2.3.2. Estimation of linear MIMO models using the LSM; 2.3.3. Identifying CL processes using the MV-LSM 2.4. CLOE class of identification methods2.4.1. Principle of CLOE methods; 2.4.2. Basic CLOE method; 2.4.3. Weighted CLOE method; 2.4.4. Filtered CLOE method or adaptively filtered CLOE; 2.4.5. Extended CLOE method; 2.4.6. Generalized CLOE method; 2.4.7. CLOE methods for systems with integrator; 2.4.8. On the validation of CLOE identified models; 2.5. Application: identification of active suspension; 3. Digital Control Design Using Pole Placement; 3.1. Digital proportional-integral-derivative algorithm control; 3.2. Digital polynomial RST control; 3.3. RST control by pole placement 3.3.1. RST control for regulation dynamics3.3.2. RST polynomial control for tracking dynamics (setpoint change); 3.3.3. RST control with independent objectives in tracking and regulation; 3.4. Predictive RST control; 3.4.1. Finite horizon predictive control; 3.4.2. Predictive control with unitary horizon; 4. Adaptive Control and Robust Control; 4.1. Adaptive polynomial control systems; 4.1.1. Estimation of the parameters for closed-loop systems; 4.1.2. Design of the adaptive control; 4.2. Robust polynomial control systems; 4.2.1. Robustness of closed-loop systems 4.2.2. Studying the stability-robustness connection4.2.3. Study of the nonlinearity-robustness connection; 4.2.4. Study of the performance-robustness connection; 4.2.5. Analysis of robustness in the study of the sensitivity function; 4.2.6. Design of the robust RST control; 4.2.7. Calibrating the sensitivity function; 5. Multimodel Control; 5.1. Construction of multimodels; 5.1.1. Fuzzy logic: Mamdani models; 5.1.2. Identification from input-output data: direct method; 5.1.3. Identification from input-output data: neural approach; 5.1.4. Linearization around various operating points 5.1.5. Convex polytopic transformation from an analytical model refined for the command5.1.6. Calculation of the validity of base models; 5.2. Stabilization and control of multimodels; 5.3. Design of multimodel command: fuzzy approach; 5.4. Trajectory tracking; 6. III-Defined and/or Uncertain Systems; 6.1. Study of the stability of nonlinear systems from vector norms; 6.1.1. Vector norms; 6.1.2. Comparison systems and overvaluing systems; 6.1.3. Determination of attractors; 6.1.4. Nested attractors [GHA 15a]; 6.2. Adaptation of control |
Beschreibung: | 1 online resource |
ISBN: | 9781119407461 111940746X 1119407931 |
Internformat
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245 | 1 | 0 | |a Process control design for industrial applications |c Dumitru Popescu, Amira Gharbi, Dan Stefanoiu, Pierre Borne |
264 | 1 | |a London, UK |b ISTE, Ltd. |c [2017] | |
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500 | |a Includes bibliographical references and index | ||
500 | |a Cover; Title Page; Copyright; Contents; Preface; List of Notations and Acronyms; 1. Introduction -- Models and Dynamic Systems; 1.1. Overview; 1.2. Industrial process modeling; 1.3. Model classes; 1.3.1. State space models; 1.3.2. Input-output models; 2. Linear Identification of Closed-Loop Systems; 2.1. Overview of system identification; 2.2. Framework; 2.3. Preliminary identification of a CL process; 2.3.1. Multivariable linear identification methods; 2.3.2. Estimation of linear MIMO models using the LSM; 2.3.3. Identifying CL processes using the MV-LSM | ||
500 | |a 2.4. CLOE class of identification methods2.4.1. Principle of CLOE methods; 2.4.2. Basic CLOE method; 2.4.3. Weighted CLOE method; 2.4.4. Filtered CLOE method or adaptively filtered CLOE; 2.4.5. Extended CLOE method; 2.4.6. Generalized CLOE method; 2.4.7. CLOE methods for systems with integrator; 2.4.8. On the validation of CLOE identified models; 2.5. Application: identification of active suspension; 3. Digital Control Design Using Pole Placement; 3.1. Digital proportional-integral-derivative algorithm control; 3.2. Digital polynomial RST control; 3.3. RST control by pole placement | ||
500 | |a 3.3.1. RST control for regulation dynamics3.3.2. RST polynomial control for tracking dynamics (setpoint change); 3.3.3. RST control with independent objectives in tracking and regulation; 3.4. Predictive RST control; 3.4.1. Finite horizon predictive control; 3.4.2. Predictive control with unitary horizon; 4. Adaptive Control and Robust Control; 4.1. Adaptive polynomial control systems; 4.1.1. Estimation of the parameters for closed-loop systems; 4.1.2. Design of the adaptive control; 4.2. Robust polynomial control systems; 4.2.1. Robustness of closed-loop systems | ||
500 | |a 4.2.2. Studying the stability-robustness connection4.2.3. Study of the nonlinearity-robustness connection; 4.2.4. Study of the performance-robustness connection; 4.2.5. Analysis of robustness in the study of the sensitivity function; 4.2.6. Design of the robust RST control; 4.2.7. Calibrating the sensitivity function; 5. Multimodel Control; 5.1. Construction of multimodels; 5.1.1. Fuzzy logic: Mamdani models; 5.1.2. Identification from input-output data: direct method; 5.1.3. Identification from input-output data: neural approach; 5.1.4. Linearization around various operating points | ||
500 | |a 5.1.5. Convex polytopic transformation from an analytical model refined for the command5.1.6. Calculation of the validity of base models; 5.2. Stabilization and control of multimodels; 5.3. Design of multimodel command: fuzzy approach; 5.4. Trajectory tracking; 6. III-Defined and/or Uncertain Systems; 6.1. Study of the stability of nonlinear systems from vector norms; 6.1.1. Vector norms; 6.1.2. Comparison systems and overvaluing systems; 6.1.3. Determination of attractors; 6.1.4. Nested attractors [GHA 15a]; 6.2. Adaptation of control | ||
650 | 7 | |a TECHNOLOGY & ENGINEERING / Engineering (General) |2 bisacsh | |
650 | 4 | |a Process control | |
650 | 0 | 7 | |a Prozesssteuerung |0 (DE-588)4047594-3 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Prozessentwicklung |g Technik |0 (DE-588)4278925-4 |2 gnd |9 rswk-swf |
689 | 0 | 0 | |a Prozessentwicklung |g Technik |0 (DE-588)4278925-4 |D s |
689 | 0 | 1 | |a Prozesssteuerung |0 (DE-588)4047594-3 |D s |
689 | 0 | |5 DE-604 | |
700 | 1 | |a Popescu, Dumitru |e Sonstige |4 oth | |
700 | 1 | |a Gharbi, Amira |e Sonstige |4 oth | |
700 | 1 | |a Stefanoiu, Dan |e Sonstige |4 oth | |
700 | 1 | |a Borne, Pierre |e Sonstige |4 oth | |
776 | 0 | 8 | |i Erscheint auch als |n Druck-Ausgabe |z 9781786300140 |
856 | 4 | 0 | |u https://onlinelibrary.wiley.com/doi/book/10.1002/9781119407461 |x Verlag |z URL des Erstveröffentlichers |3 Volltext |
912 | |a ZDB-35-WIC | ||
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Datensatz im Suchindex
DE-BY-FWS_katkey | 675638 |
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any_adam_object | |
building | Verbundindex |
bvnumber | BV044310348 |
classification_rvk | ZM 9240 ZQ 9900 |
collection | ZDB-35-WIC |
ctrlnum | (OCoLC)992466165 (DE-599)BVBBV044310348 |
dewey-full | 629.8/95 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 629 - Other branches of engineering |
dewey-raw | 629.8/95 |
dewey-search | 629.8/95 |
dewey-sort | 3629.8 295 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Werkstoffwissenschaften / Fertigungstechnik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
format | Electronic eBook |
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id | DE-604.BV044310348 |
illustrated | Not Illustrated |
indexdate | 2024-08-01T12:58:45Z |
institution | BVB |
isbn | 9781119407461 111940746X 1119407931 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029714020 |
oclc_num | 992466165 |
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owner | DE-861 DE-862 DE-BY-FWS DE-863 DE-BY-FWS |
owner_facet | DE-861 DE-862 DE-BY-FWS DE-863 DE-BY-FWS |
physical | 1 online resource |
psigel | ZDB-35-WIC UBG_PDA_WIC ZDB-35-WIC FRO_PDA_WIC ZDB-35-WIC UBG_PDA_WIC |
publishDate | 2017 |
publishDateSearch | 2017 |
publishDateSort | 2017 |
publisher | ISTE, Ltd. |
record_format | marc |
series2 | Robotics series |
spellingShingle | Process control design for industrial applications TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh Process control Prozesssteuerung (DE-588)4047594-3 gnd Prozessentwicklung Technik (DE-588)4278925-4 gnd |
subject_GND | (DE-588)4047594-3 (DE-588)4278925-4 |
title | Process control design for industrial applications |
title_auth | Process control design for industrial applications |
title_exact_search | Process control design for industrial applications |
title_full | Process control design for industrial applications Dumitru Popescu, Amira Gharbi, Dan Stefanoiu, Pierre Borne |
title_fullStr | Process control design for industrial applications Dumitru Popescu, Amira Gharbi, Dan Stefanoiu, Pierre Borne |
title_full_unstemmed | Process control design for industrial applications Dumitru Popescu, Amira Gharbi, Dan Stefanoiu, Pierre Borne |
title_short | Process control design for industrial applications |
title_sort | process control design for industrial applications |
topic | TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh Process control Prozesssteuerung (DE-588)4047594-3 gnd Prozessentwicklung Technik (DE-588)4278925-4 gnd |
topic_facet | TECHNOLOGY & ENGINEERING / Engineering (General) Process control Prozesssteuerung Prozessentwicklung Technik |
url | https://onlinelibrary.wiley.com/doi/book/10.1002/9781119407461 |
work_keys_str_mv | AT popescudumitru processcontroldesignforindustrialapplications AT gharbiamira processcontroldesignforindustrialapplications AT stefanoiudan processcontroldesignforindustrialapplications AT bornepierre processcontroldesignforindustrialapplications |