Course detail

Technical Applications of Image Analysis

FSI-RUI Acad. year: 2024/2025 Summer semester

The course deals with digital image data acquisition, calibration, filtration and analysis.  Moreover the course consists of pattern recognition for applications in technology and science.

Learning outcomes of the course unit

Prerequisites

Basic knowledge of mathematical logic, set theory and mathematical analysis

Planned learning activities and teaching methods

Assesment methods and criteria linked to learning outcomes

Course-unit credit based on written test.
The exam has a written and oral part.

 

Attendance at seminars is controlled. An absence can be compensated via solving additional problems.

Language of instruction

Czech

Aims

The aim of the course is to provide the students with information about application of modern image processing techniques, image analysis and pattern recognition.

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

The study programmes with the given course

Programme N-MET-P: Mechatronics, Master's
branch ---: no specialisation, 5 credits, compulsory

Programme N-IMB-P: Engineering Mechanics and Biomechanics, Master's
branch BIO: Biomechanics, 5 credits, compulsory-optional

Programme C-AKR-P: , Lifelong learning
branch CLS: , 5 credits, elective

Programme N-IMB-P: Engineering Mechanics and Biomechanics, Master's
branch IME: Engineering Mechanics, 5 credits, compulsory-optional

Type of course unit

 

Lecture

26 hours, optionally

Syllabus

1. Classical and digital photography and its nowadays applications
2. CCD technology
3. CMOS technology
4. Digital image calibration
5. Color and muli-spectral images and their applications
6. Noise, classification, analysis, filtration
7. Additive noise filtration
8. Impulse noise filtration
9. MTF a PSF, convolution, deconvolution
10. Fourier methods of image processing
11. Adaptive filters
12. Image segmentation
13. Classification of objects and pattern recognition

Computer-assisted exercise

26 hours, compulsory

Syllabus

1. Digital image, formats
2. CCD technology, properties of chips, optimization
3. CMOS technology, properties of chips, optimization
4. Digital image calibration
5. Color and muli-spectral images
6. Noise analysis 


7. Additive noise filtration
8. Impulse noise filtration
9. MTF a PSF, convolution, deconvolution
10. Fourier methods of image processing
11. Adaptive filters
12. Image segmentation
13. Classification of objects and pattern recognition