City University of Hong Kong. Information on a Course offered by Department of Electronic Engineering with effect from Semester A in 2012/2013

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1 City University of Hong Kong Information on a Course offered by Department of Electronic Engineering with effect from Semester A in 01/013 Part I Course Title: Course Code: Course Duration: Cryptography and Network Security EE4303 One Semester (13 weeks) No. of credits: 3 Level: Medium of B4 English Instruction: Prerequisites (Course Code and Title): Precursors (Course Code and EE3016 WANs and Communication Protocols or EE3009 Data Communications and Networking and MA184 Discrete Mathematics for Computing Nil Title): Equivalent Course (Course Code EE430 Firewall Network Security and Title) : Exclusive Courses: (Course Code Nil and Title):

2 Part II 1. Course Aims: This course aims to provide the student with basic knowledge of network security and cryptography, including symmetric/asymmetric encryption algorithms, authentication methods, common network attacks and how to safeguard against them.. Course Intended Learning Outcomes (s) Upon successful completion of this course, students should be able to: No. s 1. Describe the basic concept of cryptography for network security applications, including the differences between asymmetric and symmetric algorithms.. Identify different authentication methods, common network attacks and various communication security weaknesses and then know how to safeguard against them. 3. Evaluate network security assessments by a broad range of network security monitoring tools. 4. Use various network devices and perimeter topologies to design infrastructure security with DMZs, Extranets and Intranet to establish network security 3. Teaching and Learning Activities (TLAs) Students are introduced to the knowledge of the subject during the lecture sessions especially on basic knowledge of general security concepts, cryptography and infrastructure security. The comprehension is strengthened with interactive questions and answers. Live demonstrations using popular networking attack tools to make the lecture session more interesting. Students perform hands-on tasks in laboratory exercises to strengthen what they have learnt. They will be able to design and setup network services. They are also able to use a broad range of network security tools for security assessments. After the laboratory, they will have to write a report to reflect on what they have learnt and the experience and knowledge they have derived. Lab 1: Port Scanning and Packet Sniffing Lab : Linux Firewalls using iptable Lab 3: SSH and Password Cracking Lab 4: Intrusion Detection using Snort A small group development project of around 4 students per group will be given to students. Students can choose to analyse, evaluate or compare existing techniques through a literature survey, and to perform some system set-up and configurations (some programming may be required). Each group will choose or propose a topic of interest in the field of Network Security. Students are required to give a 0-minute oral presentation of their selected topic and written project proposal and report

3 Timetabling Information Pattern Hours Lecture: 6 Tutorials and 13 Laboratory: Other activities: 4. Assessment Tasks/Activities Continuous Assessment Type of assessment tasks Assignments, Laboratories, Group Project, Mid-term Test Weighting (if applicable) 50% Examination Written exam 50% ( hours) Remark: To pass the course, students are required to achieve at least 35% in course work and 35% in the examination. Also, 75% laboratory attendance rate must be obtained. 5. Grading of Student Achievement: Refer to Grading of Courses in the Academic Regulations. Letter Grade Grade Description of Student Achievement Grade Point Definitions A+ A A Excellent: Evidence of excellent grasp of s and good grasp of the remaining s B+ 3.3 Good: Evidence of good grasp all s. B B C+ C C Adequate: Evidence of satisfactory grasp of s and some evidence of the remaining s D 1.0 Marginal: Evidence of satisfactory grasp of any one and some evidence of the remaining 3 s F 0.0 Failure: Show little or no evidence of understanding any s.

4 6. Constructive Alignment with Major Outcomes Please state how the course contribute to the specific MILO(s) MILO How the course contribute to the specific MILO(s) 1,, 3, 5 The application of mathematics, science and engineering concepts on network security is central to the aims of this course. In this course, students are provided opportunity to apply mathematics knowledge on analysing cryptography algorithms and engineering knowledge on setting up experimental networked computer systems with design problems. 4, 7, 10 Four laboratory exercises, where students will perform hands-on tasks in different network security topics. After the laboratory, they will have to write reports to reflect on what they have learnt and the experience and knowledge they have derived. In addition, group project are given to students to assess their competence level of knowledge and comprehension, ability to analyze given information, ability to apply knowledge and skills in new situation, ability to synthesize structure, and ability to evaluate given data to make judgment. Part III Keyword Syllabus: Introduction to the Concepts of Information Security The Need for Security,; Security Approaches; Principles of Security; Security Policy. Types of Attacks Normal Flow of Attacks: Interruption, Interception, Modification, Fabrication; Passive Attack: Sniffers, Risks of Sniffers, Traffic Analysis, Protection Against Passive Attacks, Detection of Sniffer Tools; Active Attacks: Masquerade, Replay, Modification of Messages, Denial of Service (DoS), Degradation of Service, Spoofing Attacks, Session Hijacking; Protection Against DoS and DDoS.. Firewalls Firewalls Design Principles: Traffic Control, Trade-Off Between Accessibility and Security, Protection For Vulnerable Services; Firewall Components: Firewall Administrator, Firewall Policy, Simple Packet Filers, Dynamic Packet Filtering; Proxy Firewalls: Application Gateways, Circuit-Level Gateway; Firewall Evaluation and Firewall Configuration. Cryptographic Techniques Plain Text and Cipher Text; Substitution and Transposition Techniques; Symmetric Key Cryptography with DES, Triple DES, RC4, RC5, Blowfish and AES; Asymmetric Key Cryptography with RSA; Digital Signatures; Public Key Infrastructure (PKI); Digital Certificates; Private Key Management.

5 User Authentication Mechanisms Authentication Basics; Passwords; Authentication Tokens; Certificate-based Authentication; Biometric Authentication; Kerberos Internet Security Protocols Secure Socket Layer (SSL); Secure Hyper Text Transfer Protocol (SHTTP); Secure Electronic Transaction (SET); Electronic Money; Security; PGP; Wireless Application Protocol (WAP) Security; IPSec and VPN Recommended Reading: Textbook: Behrouz A. Forouzan, Cryptography and Network Security, McGraw Hill, 008, EISBN: Reference Books: Edward Amoroso, Fundamentals of Computer Security Technology, Prentice-Hall, ISBN William R Cheswick and Steven M Bellovin, Firewalls and Internet Security, Addison- Wesley, ISBN Rolf Oppliger, Internet and Intranet Security, Second edition, Artech House, Incorporated, 001. ISBN Charlie Kaufman, Radia Perlman and Mike Speciner, Network Security - Private Communication in a Public World, Prentice Hall, ISBN William Stallings, Network Security Essentials: Applications and Standards, Prentice- Hall, 000. ISBN

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