Traffic intersections are the most suitable locations for the deployment of computing, communications, and intelligence services for smart cities of the future. The abundance of data to be collected and processed, in combination with privacy and security concerns, motivates the use of the edge-computing paradigm which aligns well with physical intersections in metropolises. This paper focuses on high-bandwidth, low-latency applications, and in that context it describes: (i) system design considerations for smart city intersection intelligence nodes; (ii) key technological components including sensors, networking, edge computing, low latency design, and AI-based intelligence; and (iii) applications such as privacy preservation, cloud-connected vehicles, a real-time "radar-screen", traffic management, and monitoring of pedestrian behavior during pandemics. The results of the experimental studies performed on the COSMOS testbed located in New York City are illustrated. Future challenges in designing human-centered smart city intersections are summarized.
翻译:交通交叉点是未来智能城市最适于部署计算、通信和情报服务的地点,需要收集和处理的大量数据,加上隐私和安全考虑,促使使用与大都市物理交叉点相协调的边际计算模式,本文侧重于高带宽、低长应用,并在此背景下说明:(一) 智能城市交叉情报节点的系统设计考虑;(二) 关键技术组成部分,包括传感器、联网、边际计算、低潜伏设计和AI型情报;(三) 隐私保护、云层连接车辆、实时“雷达屏”、交通管理、流行病期间行人行为监测等应用,并概述了在纽约市的COSMOS测试台进行的实验研究的结果,概述了设计以人为本的智能城市交叉点方面今后的挑战。