A framework for collaborative remote experimentation for a physical laboratory using a low cost embedded web server
Tài liệu tham khảo
Beetner D., Pottinger H., Mitchell K., Laboratories teaching concepts in microcontrollers and hardware–software co-design. In: 30th annual frontiers in education conference, vol. 2, S1/1–5; 2000.
Callaghan, 2006, Client–server architecture for collaborative lecture-led remote experimentation, APRU DLI
Callaghan M.J., Harkin J., McGinnity T.M., Maguire L.P. An Internet-based methodology for remotely accessed embedded systems. In: Proceedings of IEEE international conference on systems, man and cybernetics, Tunisia, p. 157–62. 2002.
Callaghan, 2007, Client–server architecture for collaborative remote experimentation, Journal of Network and Computer Applications, 30, 1295, 10.1016/j.jnca.2006.09.006
Davis H. Secure untethered, IP-enabled devices, Intel Embedded Community (last accessed August 2010).
Duboc, 2006, Doctoral symposium: presentations: a framework for modelling and analysis of software systems scalability, In: Proceedings of the 28th international conference on software engineering ICSE ’06, 949
Fielding R., Gettys J., Mogul J.C., Frystyk H., Masinter L., Leach P., Berners-Lee T. Hypertext Transfer Protocol—HTTP/1.1, Network Working Group, June 1999.
Freescale Semiconductor, Using the serial peripheral interface to communicate between multiple microcomputers, AN991/D Rev. 1 January 2008
Grand J. Introduction to embedded security. Grand Idea Studio Inc., 2004.
Heath, 2003
Hill, 1990, What is scalability?, ACM SIGARCH Computer Architecture News, 18, 18, 10.1145/121973.121975
Infineon Technologies, 2010, Embedded security: secure solutions protecting your assets, Document order no. B189-H9424-G1-X-7600
Jacobson V. Congestion avoidance and control. In: Proceedings of SIGCOMM ’88. Stanford, CA: ACM. August 1988.
Johnson, 2000
Karn P., Partridge C. Improving round-trip time estimates in reliable transport protocols. ACM SIGCOMM ’87 (11–13 August 1987).
Lindh T.A. New approach to performance monitoring in IP networks—combining active and passive methods. Passive & active measurement workshop, Fort Collins, USA, 2002.
Microchip Technology, Enhanced flash microcontrollers with 10-bit A/D nanoWatt technology. Datasheet DS39626B January 2004
Microchip Technology, The microchip TCP/stack. Application Note AN00833, DS00833B, 2002a.
Microchip Technology. Stand-alone Ethernet controller with SPI interface. Datasheet DS39662C January 2002b
Microchip Technology, Ethernet theory of operation. Application note AN1120A January 2008
MikroElektronika. mikroC Pro for PIC microcontrollers, mikroC Pro v3.2 (last accessed December 2010).
Nottingham M., Mogul J. HTTP header field registrations, The Internet Society (last accessed August 2010).
Ocaya RO, Minny J., 2010. A TCP/IP framework for Ethernet-based measurement, control and experiment data distribution. Journal of Instrumentation 5 (T11001). doi:10.1088/1748-0221/5/11/T11001
Rodríguez J.A., García E., Rejas J.,Durán M.A., Web-based distributed systems for collaborative remote experiments. International conference on accelerator and large experimental physics control systems. Trieste, Italy, 1999
Schaumont P. System-level design methods for secure embedded systems, Centre for Embedded Systems in Critical Applications, Virginia Tech., 2005.
Schreier, 2007, Connecting instruments to PCs gets simpler, cheaper with LXI system, Scientific Computing World
Stapko T. Cryptography for embedded systems. EE Times. 〈http://www.eetimes.com/design/industrial-control/4008170/What-you-need-to-know-about-embedded-systems-security〉 (last accessed August 2010).
Woodroffe A.M., Pridie S.W., Druce G. The NEPTUNE Canada junction box—interfacing science instruments to sub-sea cabled observatories. MTS/IEEE Kobe Techno-Ocean, 2008. p. 1–5.
Wolf, 2000, Embedded systems education for the future, Proceedings of the IEEE, 88, 22, 10.1109/5.811598