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An Empirical Study: CDA-based Data Innovation-driven Intelligent Traffic Control System Model of Canton City

机译:经验研究:基于CDA的数据创新驱动智能流量控制系统模型

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At present, with the growth of private cars and autos ownership, the traffic flow has soared and become a burden for the development of Canton mega-city in China. The sky-rocket number of autos, especially those private ones, has made traffic congestion and car accidents a significant problem Although people are eager to know the real-time road conditions, this is not supported by traditional traffic control system and thus Intelligent Traffic Control System cries out to address these issues Intelligent Traffic Control System serves as the frontier research subject in China and capturing concerns from both the academic field and society for the meantime data Innovation has witnessed the significant and remarkable changes in Information technology. This paper designs a brand new Intelligent Traffic Control System Model based on CDA and Data Innovation-driven; the main functions of the system consist of data acquirement, data analysis and dada driven process in both macro and micro layers. An Empirical Study has followed up to check the effects of this model by the case study of Canton City in transportation system. A positive statistical result has obtained, confirming the positive effect of this model. The results have shown a high practicability and reliability in practical use. With the data acquired, collected and innovatively-driven by monitors installed and decoded in intersections and sub-sections, different road conditions are discriminated, calculated and shown in diverse modes on the controlling layer to allocate efficient paths/routes to avoid the traffic congestion; meanwhile this model renders a guideline for a traffic authority to make decisions on traffic control.
机译:目前,随着私家车和汽车所有权的增长,交通流量飙升,并成为中国广州市城市发展的负担。 Autos的天空火箭数,特别是那些私人的,已经使交通拥堵和汽车事故发生了重大问题,尽管人们渴望了解实时道路状况,但传统的交通管制系统不支持,因此智能交通控制系统呼断解决这些问题这些问题智能交通管制系统作为中国的前沿研究主题,从学术领域和社会捕获了与此同时的数据创新的关注,已经目睹了信息技术的显着和显着的变化。本文设计了一种基于CDA和数据创新驱动的全新智能流量控制系统模型;系统的主要功能包括宏观和微层中的数据采集,数据分析和DADA驱动过程。实证研究随访,通过运输系统的行政区城市的案例研究来检查该模型的影响。获得了阳性统计结果,确认了该模型的积极效果。结果表明了实际使用的高实用性和可靠性。利用所获取的数据,通过安装和解码的监视器收集和创新驱动,在控制层上以不同模式进行区分,计算和显示不同的道路条件,以分配有效的路径/路由以避免交通拥堵;同时,该模型使交通机构做出关于交通管制决策的指导。

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