This article presents the deployment and experimentation architecture of the Aveiro Tech City Living Lab (ATCLL) in Aveiro, Portugal. This platform comprises a large number of Internet-of-Things devices with communication, sensing and computing capabilities. The communication infrastructure, built on fiber and Millimeter-wave (mmWave) links, integrates a communication network with radio terminals (WiFi, ITS-G5, C-V2X, 5G and LoRa(WAN)), multiprotocol, spread throughout 44 connected points of access in the city. Additionally, public transportation has also been equipped with communication and sensing units. All these points combine and interconnect a set of sensors, such as mobility (Radars, Lidars, video cameras) and environmental sensors. Combining edge computing and cloud management to deploy the services and manage the platform, and a data platform to gather and process the data, the living lab supports a wide range of services and applications: IoT, intelligent transportation systems and assisted driving, environmental monitoring, emergency and safety, among others. This article describes the architecture, implementation and deployment to make the overall platform to work and integrate researchers and citizens. Moreover, it showcases some examples of the performance metrics achieved in the city infrastructure, the data that can be collected, visualized and used to build services and applications to the cities, and, finally, different use cases in the mobility and safety scenarios.
翻译:本篇文章介绍了葡萄牙阿韦罗城市生活实验室(Aveiro Tech City Living Lab)在葡萄牙阿韦罗的部署和实验结构,该平台由大量具有通信、遥感和计算能力的互联网操作装置组成,通信基础设施以纤维和毫米波(mWave)连接为基础,将通信网络与无线电终端(WiFi、ITS-G5、C-V2X、5G和LoRa(WAN))、多程序化(多程序化)相结合,分布在该城市的44个连接接入点,此外,公共交通还配备了通信和感测装置,所有这些装置都结合并相互连接了一套传感器,例如移动性(Radar、Lidars、视频摄像机)和环境传感器;将边缘计算和云管理结合起来,以部署服务和管理平台,以及一个数据平台,活实验室支持广泛的服务和应用:IoT、智能运输系统以及辅助驾驶、环境监测、应急和安全等。这篇文章描述了一些结构、实施和部署,将总体平台用于工作和整合城市应用、使用各种应用情况,此外,还展示了所收集的研究人员和视觉数据。