Course detail
Process automation
FEKT-NAUPAcad. year: 2011/2012
Introduction into automation system design. Design phases, models of design works. Design documentation. Real time process automation. Real time operating systems RTOS. RT programming languages. Large Scale technological systems - mathematics modeling. Verification and validation of models. Problems of numeric aspects of modeling. Case studies. Standards of electronic system design. Safety aspects. Basic design components and elements. Part problems of safe MP and MZ. Noisy, passive and active noisy protection. CAD of MP and MZ.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Learning outcomes of the course unit
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
70 points from examination
Course curriculum
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Recommended reading
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
Design phases. Design modeling and project documentation.
Design tools, standard automation system design procedures. Case study of heat exchangers.
Introduction into DCS. DCS design procedure. Requirements on DCS's HW/SW design.
SW for real time (RT) systems. RTOS. Methods of synchronization and communication. Failure of application SW.
Hart real time system programming. Case study.
Project phases and realization as an technical-organizing problem.
Mathematics modeling of large scale technological systems. Model creation and verification. Numerical aspects of modeling. Utilization of models.
Case study - control of electric power of the power plant Ledvice. Feasibility study with boundaries.
Requirements on measurement devices (MP) and measurement systems (MZ). CSN EN 61010 standard. Safety of electric devices for control, measurement and laboratory.
Basic elements and components for electronic system design with attention to safety and function.
Part problems of reliability of MP and MZ, passive and active noisy immunity.
Computer aided tools for design of MP and MZ.
Laboratory exercise
Teacher / Lecturer
Syllabus
Introduction into PC oriented DCS. Basic functions.
Extension functions of PC oriented DCS.
Finishing of PC oriented DCS system education. Tasks for individual students work.
Individual students work.
Testing of individual students work.
Individual work presentation.
Design methodology. Project documentation.
Process simulation. CAD of MP and MZ.
Realization and testing of MP and MZ design.
Realization and testing of MP and MZ design.
Individual students work.
Evaluation of laboratories.