M. Al-Rousan
[1] S.P. Levine, D.A. Bell, L.A. Jaros, R.C. Simpson, Y. Koren, &J. Borenstein, The NavChair assistive wheelchair navigationsystem, IEEE Trans. on Rehabilitation Engineering, 7 (4),1999, 443–451. doi:10.1109/86.808948 [2] G. Bourhis, K. Moumen, P. Pino, S. Rohmer, & A. Pruski,Assisted navigation for a powered wheelchair, Proc. IEEE Int.Conf. on Systems, Man and Cybernetics, Le Touquet, France,1998, 553–558. doi:10.1109/ICSMC.1993.385072 [3] R.C. Simpson & S.P. Levine, Automatic adaptation in theNavChair assistive wheelchair navigation system, IEEE Trans.on Rehabilitation Engineering,7 (4), 1999, 452–463. doi:10.1109/86.808949 [4] Y. Agostini & G. Bourhis, Human-oriented architecture foran intelligent powered wheelchair, Proc. IFAC Workshop onDAR’S 95, Vienna, 1995, 127–132. [5] D.A. Bell, J. Borenstein, S.P. Levine, Y. Koren, & L. Jaros, Anassistive navigation system for wheelchairs based upon mobilerobot obstacle avoidance, Proc. IEEE Int. Conf. on Roboticsand Automation, San Diego, CA, 1994, 2018–2022. doi:10.1109/ROBOT.1994.351167 [6] C. B¨uhler, R. Hoelper, H. Hoyer, & W. Humann, Autonomousrobot technology for advanced wheelchair and robotic aids forpeople with disabilities, Robotics and Autonomous Systems,14, 1995, 213–222. doi:10.1016/0921-8890(95)00030-J [7] G. Sch¨oner, M. Dose, & C. Engels, Dynamics of behavior:Theory and applications for autonomous robot ultrasonic firingfor mobile robot obstacle avoidance, IEEE Trans. on Roboticsand Automation, 11 (1), 1995, 132–138. doi:10.1109/70.345945 [8] P. Dario, E. Guglielmelli, B. Alotta, & M.C. Carrozza, Roboticsfor medical applications, IEEE Robotics & Automation, 3 (3),1995, 44–56. doi:10.1109/100.540149 [9] C.J. Robinson, What is rehabilitation engineering? IEEETrans. on Rehabilitation Engineering, 1 (1), 1995, 1–5. [10] J. Borenstein & Y. Koren, Error eliminating rapid ultrasonicfiring for mobile robot obstacle avoidance, IEEE Trans. onRobotics and Automation, 11 (1), 1995, 132–138. doi:10.1109/70.345945 [11] L.M. Bergasa, M. Mazo, A. Gardel, M.A. Sotelo, & J.C. Garc´ıa,Guidance of a wheelchair for handicapped people by headmovements, Proc. 7th Int. Conf. on Emerging Technologiesand Factory Automation (ETFA’99), Barcelona, Spain, 1999,105–111. doi:10.1109/ETFA.1999.815344 [12] P. Mallet & G. Sch¨oner, WAD Project where attractor dynamicsaid wheelchair navigation, Proc. 2002 IEEE/RSJ Int. Conf. onIntelligent Robots and Systems EPFL, Lausanne, Switzerland,2002, 690–695. doi:10.1109/IRDS.2002.1041471 [13] K. Schilling, H. Roth, R. Lieb, & H. St¨utzle, Sensors to improvethe safety for wheelchair users, Proc. 3rd TIDE Congress,Helsinki, Finland, 1998, 331–335. [14] N.-S. Liang, L.-C. Fu, & C.-L. Wu, An integrated, flexible,and Internet-based control architecture for home automationsystem in the Internet era, Proc. IEEE Int. Conf. on Roboticsand Automation, Washington, DC, 2002, 1101–1106. doi:10.1109/ROBOT.2002.1014690 [15] M. Al-Rousan, F. Jalajel, F. Arain, & A. Auf, Web-basedwireless vehicle control, Proc. 10th IEEE Conf. on Electronics,Circuits and Systems, Sharjah, UAE, 2003, 388–391. doi:10.1109/ICECS.2003.1302058 [16] S. Garber, R. Bunzel, & T. Mongab, Wheelchair utilizationand satisfaction following cerebral vascular accident, Journalof Rehabilitation Research and Development, 39 (4), 2002,521–534. [17] The Handy Board 2003, available at http//www.handyboard.com. [18] Nokia 30 GSM connectivity terminal user’s guide for mo-dem use, Nokia Corporation, 2002, available at http//www.nokia.com. [19] H.M. Deitel & P.J. Deitel, Java how to program (EnglewoodCliffs, NJ: Prentice Hall, 2002).
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