Visual Aids Based on Ultrasonic Sensors …
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3. M.S. Sharifi, Analysis and modeling of pedestrian walking behaviors involving individuals with
disabilities, Thesis, Utah State University Logan, Utah, 2016
4. W. Tong, Z. Lin, Continuous closed-loop control method based on intelligent adaptive PID
algorithm in the walking guidance system for the blind, in The 6th Annual IEEE International
Conference on Cyber Technology in Automation, Control and Intelligent Systems, Chengdu,
China, (2016), pp. 518–523
5. T. Leibovich-Raveh, D.J. Lewis, S.A.-R. Kadhim, D. Ansari, A new method for calculating
individual subitizing ranges, Project, The University of Haifa, Israel, 2018
6. T.-N. Nguyen, H.-H. Huynh, J. Meunier, Measurement of human gait symmetry using body
surface normals extracted from depth maps. Sensors 19(4), 891 (2019)
7. A. Mirela, B. Mihaela, 3D printing procedure applied in the design of portable devices for visual
aid, in Conference POLCOM, Bucharest (2018)
8. F. Reynard, P. Terrier, Role of visual input in the control of dynamic balance: variability and
instability of gait in treadmill walking while blindfolded. Exp. Brain Res. 233, 1031–1040 (2015)
249
2. D.-R. Chebat, V. Harrar, R. Kupers, S. Maidenbaum, A. Amedi, M. Ptito, Sensory substitution
and the neural correlates of navigation in blindness, in Mobility in Visually Impaired People
(Springer International Publishing, AG, 2017)
3. M.S. Sharifi, Analysis and modeling of pedestrian walking behaviors involving individuals with
disabilities, Thesis, Utah State University Logan, Utah, 2016
4. W. Tong, Z. Lin, Continuous closed-loop control method based on intelligent adaptive PID
algorithm in the walking guidance system for the blind, in The 6th Annual IEEE International
Conference on Cyber Technology in Automation, Control and Intelligent Systems, Chengdu,
China, (2016), pp. 518–523
5. T. Leibovich-Raveh, D.J. Lewis, S.A.-R. Kadhim, D. Ansari, A new method for calculating
individual subitizing ranges, Project, The University of Haifa, Israel, 2018
6. T.-N. Nguyen, H.-H. Huynh, J. Meunier, Measurement of human gait symmetry using body
surface normals extracted from depth maps. Sensors 19(4), 891 (2019)
7. A. Mirela, B. Mihaela, 3D printing procedure applied in the design of portable devices for visual
aid, in Conference POLCOM, Bucharest (2018)
8. F. Reynard, P. Terrier, Role of visual input in the control of dynamic balance: variability and
instability of gait in treadmill walking while blindfolded. Exp. Brain Res. 233, 1031–1040 (2015)
