{"id":{"repo_id":"windsor","oai_identifier":"oai:uwindsor.scholaris.ca:20.500.14776/751"},"canonical_url":"https://search.dev.ndltd.org/etd/windsor/oai:uwindsor.scholaris.ca:20.500.14776/751","repository":{"repo_id":"windsor","name":"University of Windsor","base_url":"https://uwindsor.scholaris.ca/server/oai/request"},"display":{"title":"A Combined WiMAX/DSRC Approach to Vehicular Networking","abstract":"From wireless Internet access at cafes to the expanding popularity of smart phones, ubiquitous Internet access has generated much public demand and research. Supplying broadband Internet access for in-vehicle applications is a research area still in its infancy. This thesis examines the strengths and weaknesses of WiMAX and DSRC, two protocols that have been central in much of the research surrounding in-vehicle network access. The thesis then proposes a novel system structure that combines both of these technologies and adds a network access layer in order to provide a system structure that offers high bandwidth, bounded latency and robust support for the high levels of mobility experienced by vehicle-based users. This provides the network support for applications such as streaming audio, video and Voice over IP. The thesis also describes a demonstration system that partly implements the proposed system structure.","abstract_html":"From wireless Internet access at cafes to the expanding popularity of smart phones, ubiquitous Internet access has generated much public demand and research. Supplying broadband Internet access for in-vehicle applications is a research area still in its infancy. This thesis examines the strengths and weaknesses of WiMAX and DSRC, two protocols that have been central in much of the research surrounding in-vehicle network access. The thesis then proposes a novel system structure that combines both of these technologies and adds a network access layer in order to provide a system structure that offers high bandwidth, bounded latency and robust support for the high levels of mobility experienced by vehicle-based users. This provides the network support for applications such as streaming audio, video and Voice over IP. 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