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Real time car parking system: A novel taxonomy for integrated vehicular computing

机译:实时停车场系统:一种用于集成车辆计算的新颖分类法

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Automation of real time car parking system (RTCPS) using mobile cloud computing (MCC) and vehicular networking (VN) has given rise to a novel concept of integrated communication-computing platforms (ICCP). The aim of ICCP is to evolve an effective means of addressing challenges such as improper parking management scheme, traffic congestion in parking lots, insecurity of vehicles (safety applications), and other Infrastructure-to-Vehicle (I2V) services for providing data dissemination and content delivery services to connected Vehicular Clients (VCs). Edge (parking lot based) Fog computing (EFC) through road side sensor based monitoring is proposed to achieve ICCP. A real-time cloud to vehicular clients (VCs) in the context of smart car parking system (SCPS) which satisfies deterministic and non-deterministic constraints is introduced. Vehicular cloud computing (VCC) and intra-Edge-Fog node architecture is presented for ICCP. This is targeted at distributed mini-sized self-energized Fog nodes/data centers, placed between distributed remote cloud and VCs. The architecture processes data-disseminated real-time services to the connected VCs. The work built a prototype testbed comprising a black box PSU, Arduino IoT Duo, GH-311RT ultrasonic distance sensor and SHARP 2Y0A21 passive infrared sensor for vehicle detection; LinkSprite 2MP UART JPEG camera module, SD card module, RFID card reader, RDS3115 metal gear servo motors, FPM384 fingerprint scanner, GSM Module and a VCC web portal. The testbed functions at the edge of the vehicular network and is connected to the served VCs through Infrastructure-to-Vehicular (I2V) TCP/IP-based single-hop mobile links. This research seeks to facilitate urban renewal strategies and highlight the significance of ICCP prototype testbed. Open challenges and future research directions are discussed for an efficient VCC model which runs on networked fog centers (NetFCs).
机译:使用移动云计算(MCC)和车载网络(VN)的实时停车场系统(RTCPS)的自动化已经提出了集成通信计算平台(ICCP)的新颖概念。 ICCP的目的是发展一种有效的方法来应对挑战,例如不适当的停车管理方案,停车场的交通拥堵,车辆不安全(安全应用)以及其他用于提供数据发布和传输的基础设施到汽车(I2V)服务。向连接的车载客户端(VC)提供内容交付服务。提出了通过基于路侧传感器的监控的边缘(基于停车场)雾计算(EFC)来实现ICCP。引入了满足确定性和非确定性约束的智能停车场系统(SCPS)中的车辆客户(VC)实时云。针对ICCP提出了车载云计算(VCC)和边缘内雾节点架构。这是针对放置在分布式远程云和VC之间的分布式小型自供电Fog节点/数据中心。该体系结构处理向连接的VC分发数据的实时服务。这项工作建立了一个原型试验台,包括一个黑匣子PSU,Arduino IoT Duo,GH-311RT超声波距离传感器和SHARP 2Y0A21无源红外传感器,用于车辆检测。 LinkSprite 2MP UART JPEG摄像头模块,SD卡模块,RFID卡读取器,RDS3115金属齿轮伺服电机,FPM384指纹扫描仪,GSM模块和VCC网站门户。测试平台在车载网络的边缘运行,并通过基于基础设施到车载(I2V)TCP / IP的单跳移动链接连接到服务的VC。这项研究旨在促进城市更新战略,并强调ICCP原型试验台的重要性。针对在网络雾化中心(NetFC)上运行的有效VCC模型,讨论了开放的挑战和未来的研究方向。

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