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Advances and generic problems in instrument design methodology

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper is based on a long-term programme of research on mathematical modelling and design of instruments and instrument elements in the Measurement and Instrumentation Centre of City University, London. It considers the principal generic problems of design methodology of instrument systems and aspects of the research agenda that arises from them. It describes, in particular, recent advances in the computer aided design of sensors and actuators.
Słowa kluczowe
Rocznik
Strony
39--57
Opis fizyczny
Bibliogr. 24 poz., rys.
Twórcy
autor
Bibliografia
  • 1. Finkelstein L., Finkelstein A.: Design Theory Advances and Measurement Science, Proc. of XVI IMEKO World Congress, pp. 43-48, 2000.
  • 2. Abdullah F., Finkelstein L., Khan S. H., Hill W. J: Modelling in Measurement and Instrumentation – an Overview, Measurement, vol. 14, pp. 41-54, 1994.
  • 3. Mukherjee A., Karmakar R.: Modelling and Simulation of Engineering Systems Through Bondgraphs, Boca Raton, FL: CRC Press/Narosa Pub. House, 2000.
  • 4. Karnopp D., Margolis D. L., Rosenberg R. C.: System Dynamics: Modeling and Simulation of Mechatronic Systems, 3rd ed., New York, Chichester: Wiley, 2000.
  • 5. Tiller M.: Introduction to Physical Modeling with Modelica, Boston, Mass.; London: Kluwer Academic, 2001.
  • 6. Fritzson P. A.: Principles of object-oriented modeling and simulation with Modelica 2.1, New York, Chichester, Wiley, 2004.
  • 7. Giurgiutiu V., Lyshevski S. E.: Micromechatronics: Modeling, Analysis, and Design with MATLAB, Boca Raton, Fla.; London: CRC Press, 2004.
  • 8. Granda J. J.: The Role of Bond Graph Modeling and Simulation in Mechatronics Systems - an Integrated Software Tool, CAMP-G, MATLAB-SIMULINK Mechatronics, vol. 12, no. 9, pp. 1271-1295, 2002.
  • 9. de Kleer J.: Qualitative Physics, S. C. Shapiro Encyclopedia of Artificial Intelligence, New York, Wiley, vol. 2, pp. 907-914, 1990.
  • 10. Bray I. K.: An Introduction to Requirements Engineering, Harlow: Addison-Wesley, 2002.
  • 11. Finkelstein L., Huang J., Finkelstein A. C. W., Nusseibeh B.: Using Software Specification Methods for Measurement Instrument Systems - Structured Methods, Measurement, vol. 3, pp. 79-86, 1992.
  • 12. Finkelstein L., Huang J., Finkelstein A. C. W., Nusseibeh B.: Using Software Specification Methods for Measurement Instrument Systems - Formal Methods, Measurement, vol. 3, pp. 87-92, 1992.
  • 13. Finkelstein L., Ginger R., El-hami M., Mirza M. K.: Design Concept Generation for Instrument Systems- a Knowledge Base System Approach, Measurement, vol. 11, pp. 45-53, 1993.
  • 14. Zienkiewicz O. C., Taylor R. L., Zhu J. Z.: The Finite Element Method: Its Basis and Fundamentals, 6th Ed., Oxford: Elsevier Butterworth-Heinemann, 2005.
  • 15. Silvester P. P., Ferrari R. L.: Finite Elements for Electrical Engineers, 3rd ed., Cambridge: Cambridge University Press, 1996.
  • 16. Poljak D., Brebbia C. A.: Boundary Element Methods for Electrical Engineers (Advances in Electrical Engineering and Electromagnetics), WIT Press, 2005.
  • 17. Brebbia C. A., Dominguez J.: Boundary Elements: An Introductory Course, 2nd Ed., Computational Mechanics, 1992.
  • 18. Raamachandran J.: Boundary and Finite Elements: Theory and Problems, Delhi: Narosa Publishing House, 2000.
  • 19. Khan S. H., Abdullah F.: Finite Element Modelling of Multielectrode Capacitive Systems for Flow Imaging, IEE Proc.-G, vol. 140, no. 3, pp. 216-222, 1993.
  • 20. Khan S. H., Xie C. G., Abdullah F.: Computer Modelling of Process Tomography Sensors and Systems, Process Tomography: Principles, Techniques and Applications, eds. R. A. Williams and M. S. Beck, Oxford: Butterworth-Heinemann, 1995, pp. 325-365.
  • 21. Khan S. H., Finkelstein L., Abdullah F.: Investigation of the Effects of Design Parameters on Output Characteristics of Capacitive Angular Displacement Sensors by Finite Element Field Modelling, IEEE Trans. on Magnetics, vol. 33, no. 2, pp. 2081-2084, 1997.
  • 22. Khan S. H., Grattan K. T. V., Finkelstein L.: Investigation of Leakage Flux in a Capacitive Angular Displacement Sensor Used in Torque Motors by 3D finite element field modelling, Sensors and Actuators: A. Physical, vol. 76, pp. 253-259, 1999.
  • 23. Khan S. H., Cai M., Grattan K. T. V., Kajan K., Honeywood M., Mills S: Design and Investigation of High-Speed, Large-Force and Long-Lifetime Electromagnetic Actuators by Finite Element Modelling, Journal of Physics: Conference Series, vol. 15, pp. 300-305, 2005.
  • 24. Lasance, C. J. M.: The need for a change in thermal design philosophy, Electronics Cooling, vol. 1, no. 2, pp. 24-26, 1995.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW1-0028-0004
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