參考文獻 |
[1] Brooks, R. A., “A Robust Layered Control System for a Mobile Robot”, IEEE Journal of Robotics and Automation, Vol. 2, No. 1, March 1986, pp. 14–23.
[2] Arkin, R. C., Behavior-Based Robotics, MIT Press, Cambridge, MA, 1998.
[3] Joseph L. Jones, Anita M. Flynn, and Bruce A. Seiger, Mobile Robots: Inspiration to Implementation, AK Peters, Ltd, 1998.
[4] Rainer Bischoff, Volker Graefe, “Learning from Nature to Build Intelligent Autonomous Robots”, Intelligent Robots and Systems, 2006 IEEE/RSJ International Conference on Oct. 2006, pp. 3160–3165.
[5] M. Omar Faruque Sarker, ChangHwan Kim, Seungheon Baek, Bum-Jae You, “An IEEE-1394 Based Real-time Robot Control System for Efficient Controlling of Humanoids”, Intelligent Robots and Systems, 2006 IEEE/RSJ International Conference on Oct. 2006, pp. 1416–1421.
[6] J. Oh, D. Hanson, W. kim, I. Han, J. Kim, and I. Park, “Design of Android type Humanoid Robot Albert HUBO”, Intelligent Robots and Systems, 2006 IEEE/RSJ International Conference on Oct. 2006, pp. 1428–1433.
[7] Fumio Kanehiro, Yoichi Ishiwata, Hajime Saito, Kazuhiko Akachi, Gou Miyamori, Takakatsu Isozumi, Kenji Kaneko, Hirohisa Hirukawa, “Distributed Control System of Humanoid Robots based on Real-time Ethernet”, Intelligent Robots and Systems, 2006 IEEE/RSJ International Conference on Oct. 2006, pp. 2471–2477.
[8] http://msdn2.microsoft.com/en-us/robotics/default.aspx
[9] http://www.irobot.com/sp.cfm?pageid=305
[10] http://mindstorms.lego.com/eng/Paris_Destination/default.aspx
[11] http://www.ni.com/academic/mindstorms/
[12] 尤云千、賴健豪 – 仿生機器人步態與行為的人工演化
[13] 紀恩凱 - 仿生物六腳機器人之控制系統設計與行為建模
[14] Brooks, R. A., “How To Build Complete Creatures Rather Than Isolated Cognitive Simulators”, Architectures for Intelligence, K. VanLehn (ed), Erlbaum, Hillsdale, NJ, Fall 1989, pp. 225–239.
[15] R.David, “Grafcet :A powerful tool for specification of logic controllers”, IEEE Trans. on Control Systems Technology, Vol. 3, No. 3, 1995, pp. 253-268.
[16] CHEN, Ching-Han; DAI, Jia_Hong; “Design and high-level synthesis of discrete-event controller”, National Conference of Automatic Control and Mechtronics System, vol.1, 2002, pp. 610–615.
[17] David, R., Alla, H., Petri Nets & Grafcet–Tools for Modeling Discrete Event Systems, New York, Prentice Hall, 1992.
[18] http://www.vsi.org/
[19] http://www.oregano.at/index2.htm
[20] Jean J. Labrosse, MicroC/OS-II The Real-Time Kernel, CMP Books, April 2002
[21] http://www.micrium.com/
[22] http://www.keil.com/
[23] H. Walder and M. Platzner, “Reconfigurable Hardware Operating Systems: From Design Concepts to Realizations”, Proceedings of the 3rd International Conference on Engineering of Reconfigurable Systems and Architectures (ERSA), CSREA Press, June 2003, pp. 284–287.
[24] C. Steiger, H. Walder, and M. Platzner, “Operating Systems for Reconfigurable Embedded Platforms: Online Scheduling of Real-time Tasks”, IEEE Transaction on Computers, vol. 53, no. 11, November 2004, pp. 1392–1407.
[25] M. Ullmann, M. Hubne, B. Grimm, and J. Becker, “On-Demand FPGA Run-Time System for Dynamical Reconfiguration with Adaptive Priorities”, Field Programmable Logic and Application: 14th International Conference, FPL, Springer-Verlag Heidelberg, August 2004, pp. 454–463.
[26] Theelen B.D.; Verschueren A.C.; Reyes Suarez V.V.; Stevens M.P.J.; Nunez A., “A scalable single-chip multi-processor architecture with on-chip RTOS kernel”, Journal of Systems Architecture, Vol. 49, No. 12, December 2003, pp. 619–639.
[27] Becker, J., “Configurable systems-on-chip: challenges and perspectives for industry and universities”, International Conference on Engineering of Reconfigurable Systems and Algorithms (ERSA), 2002, pp. 109–115.
[28] Sun, F., Ravi, S., Raghunathan, A., and Jha, N.K., “Custom-instruction synthesis for extensible-processor platforms”, IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems 23 (2), 2004, pp. 216–228. |