[1]
Robert J. Telban and Frank M. Cardullof: An Integrated Model of Human Motion Perception with Visual-Vestibular Interaction. AIAA Modeling and Simulation Technologies Conference and Exhibit 6-9 August 2001 Montreal, Canada. AIAA-2001-4249.
DOI: 10.2514/6.2001-4249
Google Scholar
[2]
Jelte E. Bos and Willem Bles: Theoretical Considerations on Canal -Otolith Interaction and an Observer Model. Biological Cybernetics, 191-207, (2002).
DOI: 10.1007/s00422-001-0289-7
Google Scholar
[3]
Betty J. Mohler , Bernhard Riecke, William B. Thompson, Heinrich H. B¨ulthoff: Measuring Vection in a Large Screen Virtual Environment. Applied Perception in Graphics and Visualization, Vol. 95 (2005), pp.103-109.
DOI: 10.1145/1080402.1080421
Google Scholar
[4]
Borah, J., Young, L. R., and Curry, R. E: Optimal Estimator Model for Human Spatial Orientation: Representation of Three-Dimensional Space in the Vestibular, Ocolumotor, and Visual Systems, The New York Academy of Sciences. New York (1988).
DOI: 10.1111/j.1749-6632.1988.tb19555.x
Google Scholar
[5]
Young, L.R. Visually Induced Motion in Flight Simulation. AGARD Symposium on Flight Simulation. Brussels, Belgium(1978).
Google Scholar
[6]
Van der Steen, H: Self-Motion Perception, Ph.D. Thesis, Delft University of Technology: Delft, The Netherlands (1998).
Google Scholar
[7]
Hosman, R.J., and Van der Vaart, J. C. Perception of Roll Rate from an Artificial Horizon and Peripheral Displays. 19th Annual Conference onManual Control. Cambridge, MA, (1983).
Google Scholar
[8]
Berthoz, A., Pavard, B., and Young, L. R. Perception of Linear Horzontal Self-Motion Induced by Peripheral Vision Linearvection. Experimental Brain Research, 23, pp.471-489, (1975).
DOI: 10.1007/bf00234916
Google Scholar
[9]
Benson, A.J., Hutt, E. C. B., and Brown, S. F: Thresholds for the Perception of Whole Body Angular Movement About a Vertical Axis. Aviation, Space, and Environmental Medicine, 60: pp.205-213, (1989).
Google Scholar
[10]
Wertheim A H: Motion perception during self-motion: The Direct Versus Inferential Controversy Revisited, Behavioral and Brain Sciences 17 293 – 355, (1994).
DOI: 10.1017/s0140525x00034646
Google Scholar
[11]
Howard I P: The perception of Posture, Self Motion and the Visual Vertical. Handbook of Perception and Human Performance volume 1, Eds K R Boff, L Kaufman, J P Thomas (New York: John Wiley) 18-2-18-52, (1986).
Google Scholar
[12]
Robert J. Telban: New Human-Centered Linear and Nonlinear Motion Cueing Algorithms for Control of Simulator Motion Systems, Ph.D. Thesis. AS, Broome Community College(1981).
Google Scholar
[13]
Graff B, Bos JE, Tielemans W, Rameckers F, Rupert AH, Guedry FE: Otolith Contribution to Ocular Torsion and Spatial Orientation dyring Acceleration, Technical Memorandum 96-3, Naval Aerospave Mecial Research Laboratory Pensacola Fa.
Google Scholar
[14]
Pierre E. Pommeller: Suboptimal Estimator for the Spatial Orientation of a Pilot, Master Thesis, Massachusetts Institute of Technology(1990).
Google Scholar