基于 MBSE 的城市道路交叉口 CPS 架构设计

Chen Wang;Xiaoping Ma;Limin Jia;Zheng Lai;Zhexuan Yang;Han Yan;Jing Zhao
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引用次数: 0

摘要

随着城市化的快速发展和交通需求的日益增长,城市交通拥堵已成为个人出行体验的障碍。城市交叉路口是交通拥堵的主要来源之一,这些瓶颈不仅会对交通效率产生负面影响,还会影响区域内的周边道路交通。为缓解城市交通拥堵,网络物理系统在交通行业得到了广泛应用,实现了对城市交通流量的感知、分析、计算和调度,并使城市交通变得安全、高效和快捷。随着系统规模和功能的扩大,系统设计也变得越来越复杂,需要深入理解系统的结构和交互关系,才能构建稳定可靠的系统。因此,本研究提出了一种基于模型的系统工程(MBSE)的城市交通交叉口网络物理系统设计方法。该方法使用系统建模语言(SysML)对系统的需求、功能和逻辑架构进行建模和详尽分析。在完成架构设计后,利用基于失效模式和影响分析(FMEA)的城市道路交叉口网络物理系统架构验证和优化方法,通过分析活动的失效模式来分析架构的可靠性,并优化系统架构以提高设计的效率和可靠性。
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CPS Architecture Design for Urban Roadway Intersections Based on MBSE
With the rapid growth of urbanization and the increasing demand for transportation, urban traffic congestion has become a hindrance to individuals' travel experience. Urban intersections are one of the primary sources of traffic congestion, and these bottlenecks have a negative impact not only on traffic efficacy but also on the surrounding road traffic in the region. To alleviate urban traffic congestion, cyber-physical systems have been widely implemented in the transportation industry, allowing for the perception, analysis, calculation, and dispatching of urban traffic flow, as well as making urban transportation safe, efficient, and quick. As the system scale and functions increase, system design has become increasingly complex, necessitating a deeper comprehension of the system's structure and interaction relationships to construct a stable and reliable system. Therefore, this study proposes a method for designing cyber-physical systems for urban traffic intersections based on Model-Based Systems Engineering (MBSE). This method models and analyses exhaustively the system's requirements, functions, and logical architecture using System Modeling Language (SysML). After the architecture design has been completed, an architecture verification and optimization method based on Failure Mode and Effect Analysis (FMEA) for urban road intersection cyber-physical systems is utilized to analyze the architecture's reliability by analyzing the failure modes of activities and to optimize the system architecture to improve the design's efficiency and reliability.
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