National Repository of Grey Literature 4 records found  Search took 0.01 seconds. 
Hash functions and their usage in user authentication
Piller, Igor ; Stančík, Peter (referee) ; Hajný, Jan (advisor)
This thesis concerns with hash functions and their usage in authentication. It presents basics of hash functions theory and construction elements. In particular the thesis focuses on LMHash, MD4, MD5 and SHA family hash functions, which are compared from the security point of view. The thesis describes in general the most frequently used hash function attacks, points out the weaknesses of current construction and mentions the future perspective of hash functions. Furthermore the thesis outlines the area authentication and describes usage of hash functions in the area. Practical part of the thesis contains an implements of a general authentication framework implemented in programming language C#. The result is client and server applications, in which two selected authentication methods were successfully tested. The result implementation is flexible with respect to the possible future use of other authentication methods.
Design of user authentication for small and medium networks
Hajný, Jan ; Pust, Radim (referee) ; Burda, Karel (advisor)
The main focus of this Master’s thesis is user authentication and access control in a computer network. I analyze the TCP/IP model in connection with security and describe main stepping stones of authentication protocols (mainly hash functions). The authentication protocol analysis follows. I begin with LANMAN protocol analysis for the reason of a security comparison. The NTLM, Kerberos and Radius follows. The focus is on the Kerberos which is chosen as a main authentication protocol. This is also a reason why the modification used in MS domains is described. The implementation and functional verification is placed in the second part which is more practical. The virtualization technology is used for an easier manipulation. The result is a computer network model requiring user authentication and minimizing the possibility of an attack by unauthorized clients.
Hash functions and their usage in user authentication
Piller, Igor ; Stančík, Peter (referee) ; Hajný, Jan (advisor)
This thesis concerns with hash functions and their usage in authentication. It presents basics of hash functions theory and construction elements. In particular the thesis focuses on LMHash, MD4, MD5 and SHA family hash functions, which are compared from the security point of view. The thesis describes in general the most frequently used hash function attacks, points out the weaknesses of current construction and mentions the future perspective of hash functions. Furthermore the thesis outlines the area authentication and describes usage of hash functions in the area. Practical part of the thesis contains an implements of a general authentication framework implemented in programming language C#. The result is client and server applications, in which two selected authentication methods were successfully tested. The result implementation is flexible with respect to the possible future use of other authentication methods.
Design of user authentication for small and medium networks
Hajný, Jan ; Pust, Radim (referee) ; Burda, Karel (advisor)
The main focus of this Master’s thesis is user authentication and access control in a computer network. I analyze the TCP/IP model in connection with security and describe main stepping stones of authentication protocols (mainly hash functions). The authentication protocol analysis follows. I begin with LANMAN protocol analysis for the reason of a security comparison. The NTLM, Kerberos and Radius follows. The focus is on the Kerberos which is chosen as a main authentication protocol. This is also a reason why the modification used in MS domains is described. The implementation and functional verification is placed in the second part which is more practical. The virtualization technology is used for an easier manipulation. The result is a computer network model requiring user authentication and minimizing the possibility of an attack by unauthorized clients.

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