Course: Technical Means of Automation

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Course title Technical Means of Automation
Course code AUEM/AE4TA
Organizational form of instruction Lecture + Lesson
Level of course Bachelor
Year of study not specified
Semester Summer
Number of ECTS credits 5
Language of instruction English
Status of course unspecified
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Course availability The course is available to visiting students
Lecturer(s)
  • Skočík Petr, Ing. Ph.D.
  • Kovář Josef, Ing.
  • Křesálek Vojtěch, doc. RNDr. CSc.
  • Adámek Martin, Ing. Ph.D.
Course content
Course contents: Measuring systems in automation - instrumentation and design. Error analysis. Resistance, capacitive and inductive sensors. Optical sensors and sensors. Use of piezoelectric and ultrasonic sensors and transducers. Interference, interference and noise in measurement. Principles of signal processing. Electro-hydrostatic actuators. Direct electromechanical actuators - el. machinery. Unitary theories of their dynamic description. Motion converters.

Learning activities and teaching methods
unspecified
prerequisite
Knowledge
The student is expected to have basic knowledge of university mathematics, physics, included in previous semesters of study.
The student is expected to have basic knowledge of university mathematics, physics, included in previous semesters of study.
learning outcomes
By completing this course the student will be able to apply the acquired knowledge and skills in the field of principles, physical description and especially the behavior and influence of measuring systems and actuators on the control of systems in general and robotic systems with emphasis on controlling their movement. This knowledge is a prerequisite for successful design and implementation of technical tasks with direct application in industrial automation and industrial robotics, as well as tasks with control of general robotic systems such as various types of service robots (rehabilitation and prosthetic robotic systems, flying robots, robots in safety applications, etc. .
By completing this course the student will be able to apply the acquired knowledge and skills in the field of principles, physical description and especially the behavior and influence of measuring systems and actuators on the control of systems in general and robotic systems with emphasis on controlling their movement. This knowledge is a prerequisite for successful design and implementation of technical tasks with direct application in industrial automation and industrial robotics, as well as tasks with control of general robotic systems such as various types of service robots (rehabilitation and prosthetic robotic systems, flying robots, robots in safety applications, etc. .
Skills
1. The student will analyze the needs of sensors and actuators in selected technologies. 2. The student independently designs a robotic system including the selection of sensors and actuators according to technical specifications. 3. The student evaluates experimental data, sensor signals, evaluates them, correctly interprets the results. 4. The student applies the knowledge to the outputs of the actuators and performs an analysis of the entire system. 5. The student evaluates sensors and actuators in terms of static and dynamic parameters and determines their limitations.
1. The student will analyze the needs of sensors and actuators in selected technologies. 2. The student independently designs a robotic system including the selection of sensors and actuators according to technical specifications. 3. The student evaluates experimental data, sensor signals, evaluates them, correctly interprets the results. 4. The student applies the knowledge to the outputs of the actuators and performs an analysis of the entire system. 5. The student evaluates sensors and actuators in terms of static and dynamic parameters and determines their limitations.
Recommended literature
  • Ďaďo, S., Kreidl M. Senzory a měřicí obvody. Praha, 1999. ISBN 80-010-2057-6.
  • Driggers. Introduction to infrared and electro-optical systems. Boston, 2012. ISBN 978-1-60807-101-2.
  • FRADEN, J. Handbook of Modern Sensors. Physics, designs and Applications. New York: Springer Verlag, 1996. ISBN 1-56396-538-0.
  • Husák, Miroslav. Mikrosenzory a mikroaktuátory. Vyd. 1. Praha : Academia, 2008. ISBN 978-80-200-1478-8.
  • SKALICKÝ, J. Elektrické servopohony. Vyd. 2. Brno: Vysoké učení technické, 2001. ISBN 80-214-1978-4.
  • Úředníček, Zdeněk. Elektromechanické akční členy. Vyd. 1. Zlín : Univerzita Tomáše Bati ve Zlíně, 2009. ISBN 978-80-7318-835-1.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester