Sensors · 2023 · 23 citations · 24 references
Artificial IntelligenceEngineeringSmart CityIntelligent SystemsIot SystemIntelligent Traffic ManagementData ScienceSmart CitiesSystems EngineeringIntelligent InfrastructureInternet Of ThingsSmart InfrastructureUrban ApplicationUrban PlanningMobile ComputingComputer ScienceIot Data AnalyticsEdge ComputingCivil EngineeringCloud ComputingUrban MobilityTransfer Learning
Smart cities have emerged as a specialized domain encompassing various technologies, transitioning from civil engineering to technology-driven solutions. The accelerated development of technologies, such as the Internet of Things (IoT), software-defined networks (SDN), 5G, artificial intelligence, cognitive science, and analytics, has played a crucial role in providing solutions for smart cities. Smart cities heavily rely on devices, ad hoc networks, and cloud computing to integrate and streamline various activities towards common goals. However, the complexity arising from multiple cloud service providers offering myriad services necessitates a stable and coherent platform for sustainable operations. The Smart City Operational Platform Ecology (SCOPE) model has been developed to address the growing demands, and incorporates machine learning, cognitive correlates, ecosystem management, and security. SCOPE provides an ecosystem that establishes a balance for achieving sustainability and progress. In the context of smart cities, Internet of Things (IoT) devices play a significant role in enabling automation and data capture. This research paper focuses on a specific module of SCOPE, which deals with data processing and learning mechanisms for object identification in smart cities. Specifically, it presents a car parking system that utilizes smart identification techniques to identify vacant slots. The learning controller in SCOPE employs a two-tier approach, and utilizes two different models, namely Alex Net and YOLO, to ensure procedural stability and improvement.
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Xizheng Zhang, Sichen Fang, Yongpeng Shen et al. · IEEE Transactions on Intelligent Transportation Systems · 2023 · 249 citations
Transport infrastructure connectivity and conflict resolution: a machine learning analysis
Ji Luo, Guijun Wang, Guangqin Li et al. · Neural Computing and Applications · 2021 · 143 citations · Full text