Course detail

Automatic Diagnostics

FSI-VAD-KAcad. year: 2009/2010

The course is concerned with problems technical diagnostics in mechanical and automatic application. Students are acquainted with basic methods and instrumentation of technical non- removal diagnostics and of the special condition monitoring system with fully automated function. Special attention is paid to diagnostics of individual components of control loop and diagnostics in modern control systems. A self-diagnostics mode system in automatic control and relations of the diagnostics to reliability and maintenance of systems are also dealt.

Language of instruction

Czech

Number of ECTS credits

5

Mode of study

Not applicable.

Learning outcomes of the course unit

General overview of methods and devices of technical diagnostics and applying the acquired knowledge for solving a specific assignment. The ability to select the appropriate diagnostics and locates failure and cause in elementary cases, ability to evaluate basic parameters of reliability of systems.

Prerequisites

Basic knowledge of physics, mathematics, theory of probability and measurement of technical quantities

Co-requisites

Not applicable.

Planned learning activities and teaching methods

Teaching methods depend on the type of course unit as specified in the article 7 of BUT Rules for Studies and Examinations.

Assesment methods and criteria linked to learning outcomes

The course-unit credit requirements: attendance at seminars and labs.
Exam: written test and oral exam

Course curriculum

Not applicable.

Work placements

Not applicable.

Aims

Students will have an overall view of methods and devices of technical diagnostics and selecting a suitable version for condition monitoring appropriate equipment.

Specification of controlled education, way of implementation and compensation for absences

Attendance at seminars and labs is controlled. An absence is compensated by solving an individual assignment.

Recommended optional programme components

Not applicable.

Prerequisites and corequisites

Not applicable.

Basic literature

Ushakov, I., A. et al, Handbook of Reliability Engineering : New York : John Wiley and sons, Inc. 1994.
Broch, J., T., et al, Mechanical Vibration and Shock Measurements : Naerum : Bruel Kjaer 1984.
Lipovsky, G., a kol., Vibration Testing of Machines and their Maintenance : Amsterdam: Elsevier 1990.

Recommended reading

Kreidl, M., a kol., Diagnostické systémy : Praha : Vydavatelství ČVUT v Praze 2001.
Liška, M., Sládek, Z., Spolehlivost a technická diagnostika : Brno : Ediční středisko VUT v Brně, 1989.
Janoušek, I., a kol., Technická diagnostika : Praha : SNTL 1990.

Classification of course in study plans

  • Programme B3S-K Bachelor's

    branch B-AIŘ , 3. year of study, winter semester, compulsory

  • Programme M2I-K Master's

    branch M-AIŘ , 2. year of study, winter semester, compulsory

Type of course unit

 

Guided consultation

13 hours, optionally

Teacher / Lecturer

Syllabus

1. The importance of technical diagnostics
2. Basic definitions and terminology
3. Faults sources and principles of maintenance
4. Reliability of components and systems, backup
5. Distribution of diagnostics, operating and less removal diagnostics
6. Diagnostics models, methods and devices
7. Functional and physical diagnostics methods
8. Vibration and acoustic diagnostics
9. Basics of frequency analysis
10.Thermo-diagnostics, tribology-diagnostics, and electro-diagnostics
11.Automatic monitoring systems
12.Diagnostics in control loops
13.Current trends in diagnostics

Laboratory exercise

4 hours, compulsory

Teacher / Lecturer

Syllabus

1. Function diagnostics
2. Temperature in diagnostics
3. Measurement of vibration
4. Base of frequency analysis
5. Machine alignment and balancing
6. Condition monitoring systems

Controlled Self-study

35 hours, compulsory

Teacher / Lecturer

Syllabus

1. Introduction to the course
2. Reliability parameters
3. Reliability of components and systems
4. Backup, diagnostics and maintenance
5. Subjective diagnostics and failure locating
6. Utilizing of diagnostics in control loop
7. Theoretical base of diagnostics methods