Course detail
Fault Tolerant Systems
FIT-SODAcad. year: 2021/2022
Principles of fault tolerance, structures and techniques. Codes for control and correction of information. Cyclic codes, Fire codes, Galois fields, BCH and RS codes. Modelling, estimation and control of reliability. Fail-safe systems. Architecture of FT systems. Fault tolerance at VLSI level. Radiation safety and fault tolerance. Fault tolerance in computer units, memories, computer systems and communication networks. Fault tolerant and secure control systems. Distributed tolerant systems, fault tolerant software.
State doctoral exam - Final interview topics:
- Principe's, approaches and parameters of safe and fault tolerant systems.
- Parity codes, multidimensional parity codes, low-density parity codes, arithmentic codes, Raptor codes.
- Hamming codes, byte error correction codes, matrix notation of of coding and decoding.
- Cyclic codes, basic and fast CRC calculation.
- Galois finite field GF(n) construction, minimum polynomials.
- Construction and applications of BCH and RS codes.
- Time redundancy, radiation tolerant circuits and systems.
- Fault tolerance in VLSI structures - memories and multiprocessors, reconfiguration, fault and error containment.
- Fault tolerance in communication systems.
- Software implemented fault tolerance, Byzantine agreement.
Language of instruction
Mode of study
Guarantor
Department
Learning outcomes of the course unit
To get know a novel approaches to ensure availability and safety of technical means.
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Additional sessions after cunsultations wuth the lecturer.
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
Jang Y.: A Practical Guide to Error-Control Coding Using MATLAB, Artec House, 2010
Lin S. - Costello D.J.: Error Control Coding: Fundamentals and Applications, Prentice-Hall, Secobd Edition, 2004
Lin S. - Costello D.J.: Error Control Coding: Fundamentals and Applications, Prentice-Hall, Second Edition, 2004
Nicolaidis M.: Soft Errors in Modern Electronic Systems, Spribger, 2011
Shokrollahi A., Luby M.: Raptor Codes, NOW Publishers, 2011
Szefer J.: Principles of Secure Processor Architecture Design, Morgan & Claypool, 2019
Classification of course in study plans
- Programme DIT Doctoral 0 year of study, summer semester, compulsory-optional
- Programme DIT Doctoral 0 year of study, summer semester, compulsory-optional
- Programme CSE-PHD-4 Doctoral
branch DVI4 , 0 year of study, summer semester, elective
- Programme CSE-PHD-4 Doctoral
branch DVI4 , 0 year of study, summer semester, elective
- Programme DIT-EN Doctoral 0 year of study, summer semester, compulsory-optional
- Programme DIT-EN Doctoral 0 year of study, summer semester, compulsory-optional
- Programme CSE-PHD-4 Doctoral
branch DVI4 , 0 year of study, summer semester, elective
- Programme CSE-PHD-4 Doctoral
branch DVI4 , 0 year of study, summer semester, elective
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
- FT design methodology, structures and techniques.
- Error control codes. Parity codes, multidimensional parity codes, arithmetic codes.
- Residue codes, Hamming codes, sparse parity codes. Raptor codes.
- Cyclic codes, Fire codes.
- Galois fields GF(n) and their construction, BCH and Reed-Solomon codes, byte error detection.
- Time redundancy, alternating logic.
- Reliability modeling, combinatorial models, MIL-HDBK-217. Markov reliability models.
- Safe systems.
- FT architectures.
- VLSI fault tolerance. Radiation fault tolerance.
- FT in computer units, in memorie, in computer and communication systems.
- Fault tolerant and secure control systems.
- Distributed FT systems.
- Software implemented fault tolerance.
Guided consultation in combined form of studies
Teacher / Lecturer