Main objectives of the course:
Course information sheet | |||||||||||||
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University: University of Žilina | |||||||||||||
Faculty: Faculty of Management Science and Informatics | |||||||||||||
Course ID: 5IH117 | Course name: Interconnected embedded systems (PVS) | ||||||||||||
Form, extent and method of teaching activities: | |||||||||||||
Number of classes per week in the form of lectures, laboratory exercises, seminars or clinical practice | Lectures: 3.0 Seminars: 0.0 Lab.exercises: 1.0 | ||||||||||||
Methods by which the educational activity is delivered | Present form of education | ||||||||||||
Applied educational activities and methods suitable for achieving learning outcomes | |||||||||||||
Number of credits: 5.0 | |||||||||||||
Study workload: 150 hours Specification of the study workload: | |||||||||||||
Recommended term of study: 3. year, winter semester | |||||||||||||
Study degree: 1. | |||||||||||||
Required subsidiary courses: Prerequisites: Co-requisites: | |||||||||||||
Course requirements: Continuous assessment / evaluation: Recognition of course work – 25% Final assessment /evaluation: Written and oral examinations – 75% The final assessment of the course: 100-92 A 91-84 B 83-76 C 75-68 D 67-61 E To enroll for an exam student must have 10 points. | |||||||||||||
Course outcomes: The student will acquire basic knowledge of embedded systems with emphasis on communication. After completing the course the student: - knows the basic communication interfaces used in embedded systems, - knows the main features of real time operating systems, - is able to implement a simple communication protocol in the selected embedded system. | |||||||||||||
Course scheme: Lectures: 1. Introduction, definition of terms - embedded system and its core. 2. Transmission channel and its properties. Means of signaling. 3. Basic methods of bit encoding in serial data transmission. 4-8. Basic communication interfaces used in embedded systems, wired and wireless. 9. Data protection during transmission, detection and self-correction codes. 10. Network security, basics of cryptography utilized in networks. 11. Real-time, real-time operating systems. Exercises (laboratory): 1 - 12. Real-time communication between microcontrollers. 13. Demonstration of the solutions. | |||||||||||||
Literature: Noergaard, T.: Embedded Systems Architecture, 2005, Oxford Gansle, J.: Embedded Systems, 2008, Oxford Stinson D.R.: Cryptography. Theory and Practice, CRC Press LLC Datasheets from Atmel, Freescale, STMicroelectronics | |||||||||||||
Instruction language: slovak | |||||||||||||
Notes: | |||||||||||||
Course evaluation:: Total number of evaluated students: 0
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Course teachers: | |||||||||||||
Last updated: 2022-02-11 08:00:41.037 | |||||||||||||
The person responsible for the course: doc. Ing. Ondrej Karpiš, PhD. | |||||||||||||
Approved by: |