Course: Digital Measuring Systems 3

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Course title Digital Measuring Systems 3
Course code KEF/ČMSA3
Organizational form of instruction Exercise
Level of course Bachelor
Year of study 3
Semester Summer
Number of ECTS credits 3
Language of instruction Czech
Status of course Compulsory-optional
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Pechoušek Jiří, doc. RNDr. Ph.D.
  • Kouřil Lukáš, Mgr.
Course content
programming of the measurement systems, design of applications based on multifunctional devices, design of the GPIB measurement systems, PXI utilization with rela time system LabVIEW RT advanced LabVIEW programming, utilization of the extra LabVIEW functions industrial measurement systems design of real-time measurement applications in the CompactRIO and sbRIO systems with FPGA platform complex systems design Processing the data with SW Wolfram Mathematica

Learning activities and teaching methods
Lecture, Monologic Lecture(Interpretation, Training)
  • Attendace - 39 hours per semester
  • Preparation for the Exam - 20 hours per semester
  • Homework for Teaching - 20 hours per semester
Learning outcomes
Students will reach knowledge about the development of measurement systems based on virtual instrumentation technique. Education follows the CMSA1 and CMSA2 courses.
Knowledge Define the main ideas and conceptions of the subject, describe the main approaches of the studied topics, recall the theoretical knowledge for solution of model problems.
Prerequisites
Basic knowledge from the field of computer technologies and measurement.
KEF/ČMSA2

Assessment methods and criteria
Mark, Oral exam, Student performance

Performing the exam (practical test, and oral). Active participation in class.
Recommended literature
  • LabVIEW Measurement Manual. National Instruments.
  • LabVIEW Measurement Manual. National Instruments.
  • LabVIEW User Manual. National Instruments.
  • (2008). LOGO! 0BA6, příručka. Mikrosystémy. Siemens.
  • (2005). SIMATIC S7-200, systémový manuál. Siemens.
  • De Asmundis, R. (ed). (2011). LabVIEW - Modeling, Programming and Simulations. InTech, Rijeka.
  • Haasz V., Roztočil J., Novák J. (2000). Číslicové měřicí systémy. ČVUT Praha.
  • Haasz, V.; Sedláček, M. (2000). Elektrická měření. Přístroje a metody. ČVUT, Praha.
  • Haasz V., Sedláček M. (2000). Elektrická měření, přístroje a metody.. ČVUT Praha.
  • Kainka, B., Berndt, H.J. (2000). Využití rozhraní PC pod Windows - měření, řízení a regulace pomocí standardních portů PC. HEL, Ostrava.
  • Kainka, B.; Berndt, H.J. (2000). Využití rozhraní PC pod Windows. HEL, Ostrava.
  • Pechoušek, J. (2004). Základy programování v LabVIEW. Vydavatelství UP, Olomouc.
  • Silviu, F. (ed). (2011). LabVIEW - Practical Applications and Solutions. InTech, Rijeka.
  • Sydenham, P. Thor, R. (eds). (2005). Handbook of Measuring System Design. Wiley.
  • Šnorek, M.; Richta, K. (1996). Připojování periferií k PC. Grada Publishing, Praha.
  • Tumanski, S. (2006). Principles of Electrical Measurement. Series in sensors. Taylor & Francis, New York.
  • Vedral J. , Fischer, J. (1999). Elektronické obvody pro měřicí techniku. ČVUT Praha.
  • Vlach J. a kol. (2008). Začínáme s LabVIEW. BEN technická literatura, Praha.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Science Study plan (Version): Instrument and Computer Physics (2019) Category: Physics courses 3 Recommended year of study:3, Recommended semester: Summer