Modern vehicles equipped with on-board units (OBU) are playing an essential role in the smart city revolution. The vehicular processing resources, however, are not used to their fullest potential. The concept of vehicular clouds is proposed to exploit the underutilized vehicular resources to supplement cloud computing services to relieve the burden on cloud data centers and improve quality of service. In this paper we introduce a vehicular cloud architecture supported by fixed edge computing nodes and the central cloud. A mixed integer linear programming (MLP) model is developed to optimize the allocation of the computing demands in the distributed architecture while minimizing power consumption. The results show power savings as high as 84% over processing in the conventional cloud. A heuristic with performance approaching that of the MILP model is developed to allocate computing demands in real time.
翻译:在智能城市革命中,配备了机载机件的现代车辆(OBU)正在发挥不可或缺的作用。但是,车辆处理资源没有充分利用其潜力。车辆云的概念是利用未充分利用的车辆资源,以补充云计算服务,减轻云计算中心的负担,提高服务质量。在本文件中,我们引入了由固定边缘计算节点和中央云支持的车辆云结构。开发了一个混合整线编程模型,以优化分配结构中的计算需求分配,同时最大限度地减少电力消耗。结果显示,在常规云中,电力节约高达84%。在接近MILP模式时,正在开发一种超速性能,以实时分配计算需求。