Review of pilot models used in aircraft flight dynamics
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[1] Duane T. McRuer,et al. A Review of Quasi-Linear Pilot Models , 1967 .
[2] Richard Gray Costello. The Surge Model of the Well-Trained Human Operator in Simple Manual Control , 1968 .
[3] Duane T. McRuer,et al. A Neuromuscular Actuation System Model , 1968 .
[4] Rodney D. Wierenga,et al. An Evaluation of a Pilot Model Based on Kalman Filtering and Optimal Control , 1969 .
[5] David L. Kleinman,et al. The Human as an Optimal Controller and Information Processor , 1969 .
[6] David L. Kleinman,et al. An optimal control model of human response part I: Theory and validation , 1970 .
[7] J. Goldberg,et al. Physiology of peripheral neurons innervating semicircular canals of the squirrel monkey. II. Response to sinusoidal stimulation and dynamics of peripheral vestibular system. , 1971, Journal of neurophysiology.
[8] R. E. Magdaleno,et al. Experimental validation and analytical elaboration for models of the pilot's neuromuscular subsystem in tracking tasks , 1971 .
[9] D. Key. The Generation of a Military Specification for Flying Qualities of Piloted V/STOL Aircraft-MIL-F-83300 , 1971 .
[10] Rogers E. Smith,et al. A Flying Qualities Criterion for the Design of Fighter Flight-Control Systems , 1971 .
[11] J. M. Naish. Control information in visual flight , 1972 .
[12] Duane T. McRuer,et al. Aircraft Dynamics and Automatic Control , 1973 .
[13] H. Jex,et al. Manual Control Performance and Dynamic Response during Sinusoidal Vibration , 1973 .
[14] O. H. Gerlach,et al. Developments in mathematical models of human pilot behaviour , 1977, The Aeronautical Journal (1968).
[15] Ronald A. Hess,et al. Prediction of Pilot Opinion Ratings Using an Optimal Pilot Model , 1977 .
[16] William H. Levison,et al. Biomechanical and Performance Response of Man in Six Different Directional Axis Vibration Environments , 1977 .
[17] Charles W. Suggs,et al. Hand-arm vibration part III: A distributed parameter dynamic model of the human hand-arm system , 1978 .
[18] Ronald A. Hess,et al. A Rationale for Human Operator Pulsive Control Behavior , 1979 .
[19] D. R. Towill. Man-machine interaction in aerospace control systems , 1980 .
[20] Ronald A. Hess,et al. Structural Model of the Adaptive Human Pilot , 1980 .
[21] D. K. Schmidt. Pilot modeling and closed-loop analysis of flexible aircraft in the pitch tracking task , 1985 .
[22] D. Andrisani,et al. A nonlinear pilot model for hover , 1985 .
[23] David K. Schmidt,et al. Modeling human perception and estimation of kinematic responses during aircraft landing , 1988 .
[24] David K. Schmidt,et al. Flight dynamics of aeroelastic vehicles , 1988 .
[25] Duane T. McRuer,et al. Comparison of the human optimal control and crossover models , 1988 .
[26] William H. Levison. Alternative treatments of attention-sharing within the optimal control model , 1989, Conference Proceedings., IEEE International Conference on Systems, Man and Cybernetics.
[27] Ronald A. Hess. Model for human use of motion cues in vehicular control , 1990 .
[28] John B. Davidson,et al. Modified optimal control pilot model for computer-aided design and analysis , 1992 .
[29] Gert Pfurtscheller,et al. Brain-computer interface: a new communication device for handicapped persons , 1993 .
[30] C. Clark,et al. Flight test maneuver design using a skill- and rule-based pilot model , 1995, 1995 IEEE International Conference on Systems, Man and Cybernetics. Intelligent Systems for the 21st Century.
[31] J. C. Gibson. The definition, understanding and design of aircraft handling qualities , 1995 .
[32] David B. Doman,et al. Fixed order optimal pilot models , 1996 .
[33] M. Griffin,et al. A MODAL ANALYSIS OF WHOLE-BODY VERTICAL VIBRATION, USING A FINITE ELEMENT MODEL OF THE HUMAN BODY , 1997 .
[34] Ronald A. Hess,et al. Unified Theory for Aircraft Handl!ng Qualities and Adverse Aircraft-Pilot Coupling , 2022 .
[35] Mario Innocenti,et al. New results on human operator modelling during nonlinear behavior in the control loop , 1997, Proceedings of the 1997 American Control Conference (Cat. No.97CH36041).
[36] Ronald A. Hess. A unified theory for aircraft handling qualities and adverse aircraft-pilot coupling , 1997 .
[37] Gareth D. Padfield,et al. The making of helicopter flying qualities: a requirements perspective , 1998, The Aeronautical Journal (1968).
[38] V. Ramachandran,et al. Phantoms in the Brain: Human Nature and the Architecture of the Mind , 1998 .
[39] D. Doman,et al. Projection methods for order reduction of optimal human operator models , 1998 .
[40] M. Griffin,et al. Resonance behaviour of the seated human body and effects of posture. , 1997, Journal of biomechanics.
[41] Mario Innocenti,et al. HUMAN OPERATOR MODELLING DURING DISCONTINUOUS PERFORMANCE , 1998 .
[42] Wright-Patterson Afb,et al. AN ANALYSIS OF THE TIME-DOMAIN NEAL-SMITH CRITERION , 1998 .
[43] M. Griffin,et al. MOVEMENT OF THE UPPER-BODY OF SEATED SUBJECTS EXPOSED TO VERTICAL WHOLE-BODY VIBRATION AT THE PRINCIPAL RESONANCE FREQUENCY , 1998 .
[44] Gordon Hoehne. A Biomechanical Pilot Model for Prediction of Roll Ratcheting , 1999 .
[45] R. Koehler. UNIFIED APPROACH FOR ROLL RATCHETING ANALYSIS , 1999 .
[46] David Doman. Optimal control pilot modeling for resolving Cooper-Harper rating discrepancies , 1999 .
[47] Mario Innocenti,et al. Modeling of Nonlinear Human Operator in the Control Loop: Preliminary Results , 2000 .
[48] R A Hess,et al. Modeling human pilot cue utilization with applications to simulator fidelity assessment. , 2000, Journal of aircraft.
[49] Frank M. Cardullo,et al. Investigation of mathematical models of otolith organs for human centered motion cueing algorithms , 2000 .
[50] Barry J Baskett,et al. Aeronautical Design Standard Performance Specification Handling Qualities Requirements For Military Rotorcraft , 2000 .
[51] M. Griffin,et al. Non-linearities in apparent mass and transmissibility during exposure to whole-body vertical vibration. , 2000, Journal of biomechanics.
[52] Mark Anderson,et al. A variable strategy pilot model , 2000 .
[53] Gordon Höhne. Computer aided development of biomechanical pilot models , 2000 .
[54] Gordon Hohne. EVALUATION OF THE LATHOS DATABASE USING A BIOMECHANICAL PILOT MODEL , 2000 .
[55] M J Griffin,et al. Modelling the dynamic mechanisms associated with the principal resonance of the seated human body. , 2001, Clinical biomechanics.
[56] Gareth D. Padfield,et al. How do helicopter pilots know when to stop, turn or pull up? , 2001 .
[57] David H. Klyde,et al. Wavelet-based time-varying human operator models , 2001 .
[58] Jackson E. Bruce,et al. The Impact of Structural Vibration on Flying Qualities of a Supersonic Transport , 2001 .
[59] Carey S. Buttrill,et al. AIAA 2001-4006 The Impact of Structural Vibration on Flying Qualities of a Supersonic Transport , 2001 .
[60] M J Griffin. The validation of biodynamic models. , 2001, Clinical biomechanics.
[61] Robert J. Telban,et al. An Integrated Model of Human Motion Perception with Visual-Vestibular Interaction , 2001 .
[62] Carey S. Buttrill,et al. Simulation Study of Impact of Aeroelastic Characteristics on Flying Qualities of a High Speed Civil Transport , 2002 .
[63] David Klyde,et al. Wavelet-Based Analysis of Roll Ratchet Using a Flight Test Database , 2003 .
[64] Kevin A. Gluck,et al. Comparing Three Variants of a Computational Process Model of Basic Aircraft Maneuvering , 2003 .
[65] Septimiu E. Salcudean,et al. Suppressing operator-induced oscillations in manual control systems with movable bases , 2003, IEEE Trans. Control. Syst. Technol..
[66] Neil J. Mansfield,et al. Human Response to Vibration , 2004 .
[67] A. Berthoz,et al. Perception of linear horizontal self-motion induced by peripheral vision (linearvection) basic characteristics and visual-vestibular interactions , 1975, Experimental Brain Research.
[68] Jingzhou Yang,et al. Multi-objective Optimization for Upper Body Posture Prediction , 2004 .
[69] Fred H. Previc,et al. Spatial Disorientation in Aviation , 2004 .
[70] Max Mulder,et al. Evaluation of Vestibular Thresholds for Motion Detection in the SIMONA Research Simulator , 2005 .
[71] M. Mulder,et al. Parameterized Multi-loop Model of Pilot's Use of Central and Peripheral Visual Motion Cues , 2005 .
[72] Marc Höfinger. ADS-33E-PRF - Aeronautical Design Standard, Performance Specification, Handling Qualities Requirements for Military Rotorcraft , 2005 .
[73] Frank M. Cardullo,et al. A Conspectus on Operator Modeling: Past, Present and Future , 2006 .
[74] R. Brent Gillespie,et al. Model-Based Cancellation of Biodynamic Feedthrough Using a Force-Reflecting Joystick , 2006 .
[75] R. Brent Gillespie,et al. Cancellation of Biodynamic Feedthrough in Vehicle Control Tasks , 2007, IEEE Transactions on Control Systems Technology.
[76] Ronald Hess. Obtaining Multi-Loop Pursuit-Control Pilot Models From Computer Simulation , 2007 .
[77] Max Mulder,et al. Conducting multi-modal pilot model identification - Results of a simulator experiment , 2007 .
[78] Max Mulder,et al. New Types of Target Inputs for Multi-Modal Pilot Model Identification , 2008 .
[79] M. Mulder,et al. An Investigation into Crossover Regression and Pilot Parameter Adjustment , 2008 .
[80] Giuseppe Quaranta,et al. Aeroelastic and Biodynamic Modelling for Stability Analysis of Rotorcraft-Pilot Coupling Phenomena , 2008 .
[81] M. M. van Paassen,et al. Use of Pitch and Heave Motion Cues in a Pitch Control Task , 2009 .
[82] Joost Venrooij,et al. Relating biodynamic feedthrough to neuromuscular admittance , 2009, 2009 IEEE International Conference on Systems, Man and Cybernetics.
[83] M. M. Paassen,et al. Modeling Human Multimodal Perception and Control Using Genetic Maximum Likelihood Estimation , 2009 .
[84] David Allerton,et al. Principles of Flight Simulation , 2009 .
[85] R. A. Shenoi,et al. A simplified 3-D human body–seat interaction model and its applications to the vibration isolation design of high-speed marine craft , 2009 .
[86] Mohammad M. Lone,et al. Review of pilot modelling techniques , 2010 .
[87] Robert K. Heffley. Use of a Task-Pilot-Vehicle (TPV) Model as a Tool for Flight Simulator Math Model Development , 2010 .
[88] G. Padfield,et al. Optical Tau in Boundary Avoidance Tracking - A New Perspective on Pilot Induced Oscillations , 2010 .
[89] Peter M. T. Zaal,et al. Estimation of Time-Varying Pilot Model Parameters , 2011 .
[90] D. Purves,et al. Why we see what we do redux : a wholly empirical theory of vision , 2011 .
[91] Gareth D. Padfield,et al. The tau of flight control , 2011, The Aeronautical Journal (1968).
[92] Linghai Lu,et al. Tau guidance in boundary-avoidance tracking: new perspectives on pilot-induced oscillations , 2012 .
[93] Alastair K. Cooke,et al. Towards understanding effects of non-linear flight control system elements on inexperienced pilots , 2012 .
[94] Sebastian Seung. Connectome: How the Brain's Wiring Makes Us Who We Are , 2012 .
[95] Dale Johnson. Fundamentals of Aerospace Medicine , 2012 .
[96] Qingling Liu,et al. Pilot-induced oscillation detection and mitigation , 2012 .
[97] Henry Markram,et al. The human brain project. , 2012, Scientific American.
[98] James F. Whidborne,et al. Application of pilot models to study trajectory based manoeuvres , 2012 .
[99] Zhaodan Kong,et al. Modeling Human Guidance Behavior Based on Patterns in Agent–Environment Interactions , 2013, IEEE Transactions on Human-Machine Systems.
[100] Mohammad M. Lone. Pilot modelling for airframe loads analysis , 2013 .
[101] Alastair K. Cooke,et al. Pilot-model-in-the-loop simulation environment to study large aircraft dynamics , 2013 .