Tore Hägglund
#141,668
Most Influential Person Now
Tore Hägglund's AcademicInfluence.com Rankings
Tore Hägglundengineering Degrees
Engineering
#5332
World Rank
#6583
Historical Rank
Systems Engineering
#61
World Rank
#64
Historical Rank
Applied Physics
#1520
World Rank
#1552
Historical Rank

Download Badge
Engineering
Why Is Tore Hägglund Influential?
(Suggest an Edit or Addition)Tore Hägglund's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Automatic tuning of simple regulators with specifications on phase and amplitude margins (1984) (1746)
- Advanced PID Control (2005) (1573)
- The future of PID control (2000) (875)
- Automatic Tuning of Pid Controllers (1988) (796)
- Revisiting the Ziegler-Nichols step response method for PID control (2004) (776)
- Design of PI Controllers based on Non-Convex Optimization (1998) (520)
- Automatic Tuning and Adaptation for PID Controllers - A Survey (1992) (444)
- Automatic Tuning and Adaptation for PID Controllers—A Survey (1992) (374)
- A Control-Loop Performance Monitor (1995) (274)
- Revisiting The Ziegler‐Nichols Tuning Rules For Pi Control (2002) (267)
- Benchmark systems for PID control (2000) (205)
- Automatic Tuning of Simple Regulators (1984) (197)
- Detection and Diagnosis of Oscillation in Control Loops (1997) (185)
- Industrial adaptive controllers based on frequency response techniques (1991) (181)
- Decoupler and PID controller design of TITO systems (2006) (156)
- A friction compensator for pneumatic control valves (2002) (156)
- Automatic detection of sluggish control loops (1999) (127)
- An Industrial Dead-Time Compensating PI Controller (1996) (127)
- Performance and robustness trade-offs in PID control (2014) (119)
- Interactive Learning Modules for PID Control (2006) (110)
- New Tuning Methods for PID Controllers (1995) (109)
- A qualitative shape analysis formalism for monitoring control loop performance (2001) (105)
- REVISITING THE ZIEGLER‐NICHOLS TUNING RULES FOR PI CONTROL — PART II THE FREQUENCY RESPONSE METHOD (2004) (102)
- Robust tuning procedures of dead-time conpensating controllers (2001) (100)
- New Estimation Techniques for Adaptive Control (1983) (95)
- A Predictive PI Controller for Processes with Long Dead Time (1992) (91)
- Performance comparison between PID and dead-time compensating controllers (2002) (81)
- Optimal control allocation in vehicle dynamics control for rollover mitigation (2008) (78)
- Individualized closed-loop control of propofol anesthesia: A preliminary study (2013) (77)
- Control of unstable non-minimum-phase delayed systems (2006) (76)
- Simple tuning rules for feedforward compensators (2011) (70)
- Measurement noise filtering for PID controllers (2014) (70)
- Signal filtering in PID control (2012) (69)
- Robust PID Design Based on QFT and Convex–Concave Optimization (2017) (67)
- Industrial implementation of on-line performance monitoring tools (2005) (65)
- Automatic on-line estimation of backlash in control loops (2007) (65)
- Supervision of adaptive control algorithms (1997) (62)
- Asymmetric relay autotuning - Practical features for industrial use (2016) (58)
- Recursive Estimation of Slowly Time-Varying Parameters (1985) (56)
- Control signal constraints and filter order selection for PI and PID controllers (2011) (55)
- A Software Tool for Robust PID Design (2008) (53)
- A Unified Discussion on Signal Filtering in PID Control (2013) (49)
- Interactive tool for analysis of time-delay systems with dead-time compensators (2008) (46)
- An experimental comparison of PID autotuners (2018) (45)
- Causal analysis for alarm flood reduction (2016) (43)
- Measurement noise filtering for common PID tuning rules (2014) (41)
- Automatic Tuning of Simple Regulators for Phase and Amplitude Margins Specifications (1983) (40)
- Cascade control of the friction stir welding process to seal canisters for spent nuclear fuel (2012) (39)
- Automatic Tuning of Pid Controllers Based on Dominant Pole Design (1985) (39)
- Software-based optimal PID design with robustness and noise sensitivity constraints (2015) (37)
- The problem of forgetting old data in recursive estimation (1983) (37)
- Comparison Between Robust PID and Predictive PI Controllers with Constrained Control Signal Noise Sensitivity (2012) (36)
- Criteria and Trade-offs in PID Design (2012) (36)
- Automatic tuning of digital controllers with applications to HVAC plants (1993) (36)
- A New Auto-Tuning Design (1988) (32)
- Closed-Loop Anesthesia in Children using a PID Controller: A Pilot Study (2012) (31)
- A shape-analysis approach for diagnosis of stiction in control valves (2011) (31)
- The one-third rule for PI controller tuning (2019) (31)
- Adaptive Control of Systems Subject to Large Parameter Changes (1984) (29)
- Closed-loop performance monitoring using loop tuning (2005) (29)
- Generalized feedforward tuning rules for non-realizable delay inversion (2013) (29)
- An Industrial Adaptive PID Controller (1990) (28)
- The Blend station - a new ratio control structure (2001) (26)
- A frequency domain method for automatic tuning of simple feedback loops (1984) (26)
- Automatic Monitoring of Control Loop Performance (1994) (26)
- Robust Automatic Tuning of an Industrial PI Controller for Dead-Time Systems (2000) (25)
- Editorial: PID control (2002) (22)
- Performance indices for feedforward control (2015) (21)
- Noise filtering in PI and PID Control (2013) (20)
- Understanding PID design through interactive tools (2014) (20)
- Feed rate control in fed‐batch fermentations based on frequency content analysis (2013) (18)
- Transfer function parameter identification by modified relay feedback (2010) (18)
- Simulated mid-ranging control of propofol and remifentanil using EEG-measured hypnotic depth of anesthesia (2012) (18)
- Towards a New Generation of Relay Autotuners (2014) (18)
- Optimal feedforward compensators for systems with right-half plane zeros (2014) (18)
- Process Control in Practice (1993) (18)
- A comparison of two feedforward control structure assessment methods (2003) (17)
- A mid-ranging control strategy for non-stationary processes and its application to dissolved oxygen control in a bioprocess (2015) (16)
- Improved relay autotuning using normalized time delay (2016) (16)
- Low-order feedforward controllers: Optimal performance and practical considerations (2014) (15)
- Design of Optimal Low-Order Feedforward Controllers (2012) (15)
- Criteria for Design of PID Controllers (2003) (14)
- Software for PID design: Benefits and pitfalls (2012) (12)
- Disturbance Supervision in Feedback Loops (1992) (12)
- An Automatic Tuning Procedure for Unsymmetrical Processes (1995) (12)
- Quantitative Analysis of Influences of Model Plant Mismatch on Control Loop Behavior (2012) (12)
- Autotuner identification of TITO systems using a single relay feedback experiment (2017) (11)
- Optimal proportional–integral–derivative set-point weighting and tuning rules for proportional set-point weights (2015) (11)
- A Dead-Time Compensating Three-Term Controller (1991) (11)
- Feedforward Compensation for PID Control Loops (2012) (10)
- INDUSTRIAL APPLICATIONS OF AUTOMATIC PERFORMANCE MONITORING TOOLS (2002) (10)
- Interactive Learning Module: Basic Modelling and Identification Concepts (2008) (10)
- Robustness margins separating process dynamics uncertainties (2009) (9)
- Improved web break strategy using a new approach for steam pressure control in paper machines (2008) (9)
- Reliable Sealing of Copper Canisters through Cascaded Control of Power Input and Tool Temperature (2011) (9)
- A Frequency Domain Approach to Adaptive Control (1990) (8)
- Extending the Relay Feedback Experiment (2011) (8)
- Feedforward control concepts through Interactive Tools (2011) (8)
- Practical Experiences of Adaptive Techniques (1990) (8)
- Modelling of the oxygen level response to feed rate perturbations in an industrial scale fermentation process (2015) (8)
- Closed-Loop Identification of a First-Order Plus Dead-Time Model with Method of Moments (2000) (7)
- Experimental evaluation of feedforward tuning rules (2021) (7)
- A Frequency Domain Approach to Analysis and Design of Simple Feedback Loops (1984) (7)
- Development of basic process control structures (2018) (7)
- Revisiting the simplified IMC tuning rules for low‐order controllers: Novel 2DoF feedback controller (2020) (7)
- The Lambda Method for Tuning PI Controllers (1997) (7)
- Control Structure Design in Process Control Systems (2000) (7)
- Derivative backoff: The other saturation problem for PID controllers (2015) (7)
- Recursive Least Squares Identification with Forgetting of Old Data (1983) (6)
- Design of Measurement Noise Filters for PID Control (2014) (6)
- Modeling for Optimal PID Design (2014) (6)
- Tuning rules for feedforward control from measurable disturbances combined with PID control: a review (2021) (6)
- Cascaded Control of Power Input and Welding Temperature During Sealing of Spent Nuclear Fuel Canisters (2010) (6)
- Assessing measurements for feedforward control (2001) (6)
- AUTOMATIC TUNING OF A DIGITAL CONTROLLER (1992) (6)
- The Tracking Ratio Station (2017) (6)
- Auto-tuners for PID Controllers (2011) (6)
- On identification and control tuning of cylinder dryers (2002) (6)
- Adaptive PID Control (1988) (5)
- Design of PI Controllers (1997) (5)
- A PID Tuner Based on Phase Margin Specifications (1981) (5)
- Closed-loop tuning rules for feedforward compensator gains (2017) (5)
- Implementation of an on-line detection procedure for oscillating control loops (2002) (4)
- Revisiting the simplified internal model control tuning rules for low‐order controllers: feedforward controller (2020) (4)
- Stiction compensation in control valves (1997) (4)
- Interactive Learning Module for control interaction understanding (2009) (4)
- The Idle Index (1997) (3)
- A New Method for Design of PID Regulators (1984) (3)
- Control Structure Assessment in an Industrial Control System (2002) (3)
- An industrial control loop decoupler for process control applications (2022) (3)
- Practical evaluation of a novel multivariable relay autotuner with short and efficient excitation (2017) (3)
- Automatic Supervision of Control Valves (1994) (3)
- Design methods : PID Control (2017) (3)
- A feedforward approach to mid-ranging control (2021) (2)
- Modern Controllers Supervise Valves Automatically (1996) (2)
- Robust QFT-based PID controller for a feedforward control scheme (2018) (2)
- Dominant Pole Design (1985) (2)
- Adaptive control with fault detection (1982) (2)
- Identification of Systems Using Periodic Excitation (1991) (2)
- DESIGN OF PID CONTROLLERS FOR DECOUPLED MULTI-VARIABLE SYSTEMS (2005) (2)
- Reducing revenue loss due to disturbances in utilities using buffer tanks - A case study at Perstorp (2012) (2)
- Derivative Backoff: A Process Value Saturation Problem for PID Controllers (2015) (1)
- Teaching Control Principles to Industry Practitioners (2011) (1)
- A new ratio control structure (2000) (1)
- The Knocker - A Compensator for Stiction in Control Valves (1995) (1)
- Inversion-based feedforward actions in a ratio control system (2019) (1)
- A New Modular Approach to Active Control of Undamped Modes (2000) (1)
- Interactive Learning Modules for Control Understanding feedback fundamentals through PID control using interactivity properties (2007) (1)
- Control of yoghurt manufacturing (1978) (1)
- Incubation Time Prediction in Yoghurt Manufacturing (1983) (1)
- LCCC Workshop on Process Control (2016) (0)
- Autotunern – Den flexibla regulatorn. (The autotuner – the flexible controller). (1986) (0)
- THE IMPORTANCE OF CONTINUED EDUCATION 3 . 1 The Tuning Situation (2011) (0)
- Corrigendum to “An industrial control loop decoupler for process control applications” [Control Eng. Pract. 123 (2022) 105138] (2022) (0)
- Modeling for Optimal PID Control (2014) (0)
- 16th Nordic Process Control Workshop : Preprints (2010) (0)
- The PID controller is based on very simple ideas. As illustrated in the idealized formula below, the controller output is a combination of three terms: (2014) (0)
- A novel feeding strategy for industrial fed-batch processes based on frequency content analysis (2012) (0)
- Activity Report: Automatic Control 1989-1990 (1990) (0)
- Control systems with input and output constraints: A.H. Glattfelder and W. Schaufelberger (Eds.); Springer, Berlin, 2003☆ (2005) (0)
- Online estimation of metabolic state in industrial-scale bioreactors through the dissolved oxygen response to feed rate perturbations (2014) (0)
- Automatic Tuning of Simple Regulations for Phase and Amplitude Margins Specifications (1983) (0)
- Looking for oscillating control loops together with Nina Thornhill (2019) (0)
- Activity Report 2017: Automatic Control (2018) (0)
- A Multiprocessor DDC-package (1981) (0)
- Use of instrumental variables in self-tuning regulators (1980) (0)
- Activity Report: Automatic Control 2002 (2001) (0)
- Industrial experiences of autotuning (1986) (0)
- Next Generation Relay Autotuners – Analysis and Implementation (2021) (0)
- A linear quadratic control of a drum boiler turbine (1980) (0)
- A qualitative shape analysis procedure for for automtic monitoring of control loop performance (1995) (0)
- Design of Optimal Low-Order Feedforward Controllers for Disturbance Rejection (2012) (0)
- Relations Between Control Signal Properties and Robustness Measures (2008) (0)
- Minimum-time feedforward control in ratio control systems (2020) (0)
- Multi-Loop Control (1999) (0)
- The Knocker—The Controller that Compensates for Friction in Valves (1996) (0)
- The Blend Station (1999) (0)
- NSF-STU Workshop on Adaptive Control (1985) (0)
- Model optimization for autotuners in industrial control systems (2021) (0)
- Double Back-Calculation Approach to Deal with Input Saturation in Cascade Control Problems (2020) (0)
- Incubation time prediction in youghurt manufacturing (1982) (0)
- Book review: Control systems with input and output constraints, by A.H. Glattfelder and W. Schaufelberger (2005) (0)
- Level Estimation in Ships Based on Fault Detection (1991) (0)
This paper list is powered by the following services:
What Schools Are Affiliated With Tore Hägglund?
Tore Hägglund is affiliated with the following schools: