Publication:
Enhanced cryptographically generated address (CGA) algorithms for mobile IPV6

dc.contributor.affiliation#PLACEHOLDER_PARENT_METADATA_VALUE#en_US
dc.contributor.authorQadir, Sanaen_US
dc.date.accessioned2024-10-07T03:03:43Z
dc.date.available2024-10-07T03:03:43Z
dc.date.issued2016
dc.description.abstractThis thesis studied the Cryptographically Generated Address (CGA) algorithms in order to improve the security and performance of Mobile Internet Protocols (MIPv6) networks. At present, the biggest weakness in a MIPv6 network is the poor authentication of the Binding Update (BU) message. If a mobile node uses the CGA algorithms, then most of the attacks against a MIPv6 network can be prevented. However, using CGA algorithms is computationally costly. This thesis developed enhanced versions of the CGA algorithms. These Enhanced CGA algorithms provide a minimum computational security of O(280) and replace the use of the Rivest-Shamir-Adleman (RSA) signature scheme with the Merkle Signature Scheme (MSS). MSS is selected because its security relies on the collision resistance property of the hash function used and because it is resistant to differential side channel attacks. The thesis implemented the Enhanced CGA algorithms in C and evaluated their performance on a low-end node. It found that the Enhanced CGA Generation algorithm takes 89 ms (56% faster than the original CGA Generation algorithm at O(280)). An additional speedup of 37-40% can be obtained with the use of multithreading on a quadcore processor. Likewise, the Enhanced CGA Signature Generation algorithm is found to be 72% faster (182.5 ms) than the original CGA Signature Generation algorithm. However, the Enhanced CGA Verification algorithm and the Enhanced CGA Signature Verification algorithm are found to be slower than the original algorithms by 121% and 402% respectively. The net result of using the Enhanced CGA algorithms (instead of the original CGA algorithms) is a reduction in Layer 3 latency by 30.7 ms. This reduction is mainly because MSS key generation is 98.7% faster than RSA-3072 key generation. It is also important to note that using Enhanced CGA algorithms requires an additional 1,493 bytes to be transmitted and an additional 5,077 bytes of memory. Overall, the Enhanced CGA algorithms can be considered a significant improvement over the original CGA algorithms because they provide a higher minimal computational security of O(280) and reduce Layer 3 latency by approximately 30.7 ms.en_US
dc.description.callnumbert QA 76.9 A43 Q1E 2016en_US
dc.description.degreelevelDoctoral
dc.description.identifierThesis : Enhanced cryptographically generated address (CGA) algorithms for mobile IPV6 /by Sana Qadiren_US
dc.description.identityt11100350523SanaQadiren_US
dc.description.kulliyahKulliyyah of Engineeringen_US
dc.description.notesThesis (Ph.D)--International Islamic University Malaysia, 2016.en_US
dc.description.physicaldescriptionxix, 254 leaves :ill. ;30cm.en_US
dc.description.programmeDoctor of Philosophy (Engineering)en_US
dc.identifier.urihttps://studentrepo.iium.edu.my/handle/123456789/3044
dc.identifier.urlhttps://lib.iium.edu.my/mom/services/mom/document/getFile/gGDJrrfXfCYKIZYdLsTsCb6CFwV7tmm520170127091700692
dc.language.isoenen_US
dc.publisherGombak, Selangor : International Islamic University Malaysia, 2016en_US
dc.rightsCopyright International Islamic University Malaysia
dc.subject.lcshComputer algorithmsen_US
dc.subject.lcshMobile computingen_US
dc.subject.lcshWireless communication systems -- Security measuresen_US
dc.subject.lcshCryptographyen_US
dc.titleEnhanced cryptographically generated address (CGA) algorithms for mobile IPV6en_US
dc.typeDoctoral Thesisen_US
dspace.entity.typePublication

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