Graduate study programme

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Security of Information Systems DA3-05

ECTS 6 | P 30 | A 15 | L 15 | K 0 | ISVU 177879 | Academic year: 2019./2020.

Course groups

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Course lecturers

GRGIĆ KREŠIMIR, Lecturer
KRIŽANOVIĆ VIŠNJA, Associate

Goals

Familiarise students with fundamental security issues in information systems (understanding of possible security threats, attacks and risks), with an emphasis on information and communication systems used in vehicles. Teach students to understand fundamental principles of modern cryptography and their practical applications in security protocols used in communication within a vehicle, intervehicular communication, as well as in communication of vehicles with fixed infrastructure. Train students to plan the implementation of proper security mechanisms in vehicular networks.

Conditions for enrollment

The necessary requirements to enrol in the second year of the studies.

Course description

Fundamental security terms and premises. Fundamental principles of modern cryptography. Symmetric cryptosystems and their applications. Block cipher operating modes. Asymmetric cryptosystems and their applications. Cryptographic hash functions. Digital signature. Cryptographic key management. Security threats and risks in vehicular information systems. Types of attacks on vehicular information systems and possible countermeasures. Security protocols for wired and wireless communication standards used in vehicular networks. IEEE 1609 security standards. Privacy issues in vehicular networks. Mechanisms for secure positioning of vehicles. Cross-layer security approach, from system boot to intervehicular communication.

Student requirements

Defined by the Student evaluation criteria of the Faculty of Electrical Engineering, Computer Science and Information Technology Osijek and paragraph 1.9

Monitoring of students

Defined by the Student evaluation criteria of the Faculty of Electrical Engineering, Computer Science and Information Technology Osijek and paragraph 1.9

Obligatory literature

1. 1 W. Stallings Cryptography and Network Security – Principles and Practice Paerson, Boston, 2016.

2. 2 M. Wolf Security Engineering for Vehicular IT Systems Springer, 2009.


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Recommended additional literature

1. 1 K. Lemke, C. Paar, M. Wolf Embedded Security in Cars Springer, 2006.

Course assessment

Conducting university questionnaires on teachers (student-teacher relationship, transparency of assessment criteria, motivation for teaching, teaching clarity, etc.). Conducting Faculty surveys on courses (upon passing the exam, student self-assessment of the adopted learning outcomes and student workload in relation to the number of ECTS credits allocated to activities and courses as a whole).

Overview of course assesment

Learning outcomes
Upon successful completion of the course, students will be able to:

1. understand and describe fundamental principles of modern cryptosystems and their possible applications in vehicular information systems

2. understand and explain security risks, threats and possible attacks on vehicular information systems

3. implement and apply different security mechanisms on a vehicular information system model

4. understand and apply security communication protocols used in vehicles

5. make a model of a security mechanism application in wireless intervehicular communication, as well as in communication of vehicles and infrastructure



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