Global ETD Search

Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.

Results

Showing 1 to 7 of 7 for “"MT6D"”.

  1. Strengthening MT6D Defenses with Darknet and Honeypot capabilities

    … Mechanisms like the Moving Target IPv6 Defense (MT6D) leverage the immense address space available with the new 128-bit addressing scheme to improve security and privacy of IPv6 networks. MT6D allows participating hosts to hop onto new addresses, that are cryptographically computed, without any …

    vt Repository record for Strengthening MT6D Defenses with Darknet and Honeypot capabilities (opens in a new tab)

  2. HE-MT6D: A Network Security Processor with Hardware Engine for Moving Target IPv6 Defense (MT6D) over 1 Gbps IEEE 802.3 Ethernet

    … network. To counter, Moving Target IPv6 Defense (MT6D) provides a network host obfuscation technique that dynamically obscures network and transport layer addresses. Software driven implementations have posed many challenges, namely, constant code maintenance to remain compliant with all library …

    vt Repository record for HE-MT6D: A Network Security Processor with Hardware Engine for Moving Target IPv6 Defense (MT6D) over 1 Gbps IEEE 802.3 Ethernet (opens in a new tab)

  3. Evaluation of Moving Target IPv6 Defense and Distributed Denial of Service Defenses

    … the new protocol. Moving Target IPv6 Defense (MT6D) has been developed to attempt to leverage the new standard against DDoS attacks in the IPv6 arena. This research evaluates the DDoS prevention capabilities of the aging defenses relative to the newly developed MT6D to determine which defense …

    vt Repository record for Evaluation of Moving Target IPv6 Defense and Distributed Denial of Service Defenses (opens in a new tab)

  4. Optimizing a Network Layer Moving Target Defense by Translating Software from Python to C

    … security. The Moving Target IPv6 Defense (MT6D) is a network layer moving target defense that dynamically changes Internet Protocol version 6 (IPv6) addresses mid-session while still maintaining continuous communication. MT6D was originally written in Python language, but this …

    vt Repository record for Optimizing a Network Layer Moving Target Defense by Translating Software from Python to C (opens in a new tab)

  5. Improving the Security, Privacy, and Anonymity of a Client-Server Network through the Application of a Moving Target Defense

    … changing its IP address periodically. MT6D is one of these techniques that leverages the size of the IPv6 address space to make it statistically impossible for an attacker to find a specific target machine. MT6D was designed with a number of limitations that include manually generated …

    vt Repository record for Improving the Security, Privacy, and Anonymity of a Client-Server Network through the Application of a Moving Target Defense (opens in a new tab)

  6. Achieving Security and Privacy in the Internet Protocol Version 6 Through the Use of Dynamically Obscured Addresses

    … users' systems. A Moving Target IPv6 Defense (MT6D) that rotates through dynamically obscured network addresses while maintaining existing connections was developed to prevent these addressing vulnerabilities.MT6D is resistant to the IPv6 addressing vulnerabilities since addresses are not tied …

    vt Repository record for Achieving Security and Privacy in the Internet Protocol Version 6 Through the Use of Dynamically Obscured Addresses (opens in a new tab)

  7. Evaluating Standard and Custom Applications in IPv6 Within a Simulation Framework

    … Specifically, the framework was used to test MT6D, a custom IPv6 security application developed in the Virginia Tech IT Security Lab (ITSL) as well as test Voice over IP (VoIP) as a somewhat bandwidth demanding benchmarking standard application. The work presented shows that simulation helped …

    vt Repository record for Evaluating Standard and Custom Applications in IPv6 Within a Simulation Framework (opens in a new tab)