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dc.contributor.authorNamadchi, Fatemeh
dc.date.accessioned2026-07-23T07:28:45Z
dc.date.available2026-07-23T07:28:45Z
dc.date.issued2026en_AU
dc.identifier.urihttps://hdl.handle.net/2123/35608
dc.descriptionIncludes publication
dc.description.abstractUltra-reliable low-latency communication (URLLC) requires short-packet transmission under stringent reliability and latency constraints. In the short-block-length regime, coding schemes are evaluated against finite-block-length limits, such as the normal approximation (NA). Designing codes that approach these limits with low decoding complexity is particularly challenging at low code rates. Primitive rateless (PR) codes are promising candidates for short-packet communications due to their strong distance properties, rate compatibility, and flexible block-length design. However, their practical use is limited by the high complexity of near-maximum-likelihood (ML) decoders, especially at low rates. This thesis develops efficient decoding and coding architectures for PR codes. First, a double-bases belief propagation (BP) framework exploiting structured parity-check matrices derived from primitive polynomials is proposed. Building on this framework, a parallel hybrid decoder combining multiple-bases BP with low-order ordered statistics decoding (OSD) is developed, where parity-check matrices are optimized using a genetic algorithm. For very low-rate operation, a parallel concatenated coding scheme combining convolutional and PR codes is introduced. A parallel list Viterbi decoding strategy and an analytical approximation for the required list size are also proposed. Simulation results show that the proposed schemes closely approach the NA benchmark while significantly reducing complexity compared with high-order OSD. Moreover, they outperform several state-of-the-art short block-length coding schemes, particularly in the very low-rate regime, demonstrating the potential of PR codes for URLLC applications.en_AU
dc.language.isoenen_AU
dc.subjectUltra-Reliable Low-Latency Communications (URLLC)en_AU
dc.subjectShort Block-Length Codingen_AU
dc.subjectPrimitive Rateless Codesen_AU
dc.subjectBelief Propagation Decodingen_AU
dc.subjectOrdered Statistics Decodingen_AU
dc.subjectList Decodingen_AU
dc.titleDesign and Decoding of Short Block Codes for URLLC Applicationsen_AU
dc.typeThesis
dc.type.thesisDoctor of Philosophyen_AU
dc.rights.otherThe author retains copyright of this thesis. It may only be used for the purposes of research and study. It must not be used for any other purposes and may not be transmitted or shared with others without prior permission.en
usyd.facultySeS faculties schools::Faculty of Engineering::School of Computer Scienceen_AU
usyd.degreeDoctor of Philosophy Ph.D.en_AU
usyd.awardinginstThe University of Sydneyen_AU
usyd.advisorShirvanimoghaddam, Mahyar
usyd.include.pubYesen_AU


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