标题: 异质车载云端计算系统之资源分配问题
Resource Allocation in Heterogeneous Vehicular Cloud Computing Systems
作者: 姚佳奇
林春成
Yao, Chia-Chi
Lin, Chun-Cheng
工业工程与管理系所
关键字: 智慧运输系统;车载云端计算;半马可夫决策过程;车载随意网路;Intelligent transportation system;vehicular cloud computing;semi-Markov decision processes, VANET
公开日期: 2017
摘要: 近来随着相关研究与技术的进展,已存在许多车载网路的改良配置方式,而如何善用车载网路中有限的资源以此提升系统的服务品质成为近年来一个重要的课题。车载云端计算(Vehicular Cloud Computing; VCC)的概念随着此课题的延伸而渐渐成形, 在VCC系统中,其加入边缘计算的概念并适当地整合车载雾端(由车子的计算资源组合而成)和远程云端,以提供使用者即时的雾端和云端服务,包含计算、通讯和储存资源。虽然过去研究已建立了VCC系统的资源分配模型,且以半马可夫决策过程来获得此模型的最佳资源分配策略。然而,过去研究却很少考虑到异质车、路边基地台(Roadside Unit, RSU)。因此,本研究提出一个半马可夫决策过程模型,以此解决考量了异质车和RSU的VCC系统的资源分配问题,并求解其最佳资源分配策略。其中,异质车即为不同制造商制造的不同种类的车子,其配备将会因该车款档次而有所不同,高档车一般而言会有较好的车上配备而拥有较多的计算资源;而RSU不再只是作为通讯和传输资料之用,亦能用于VCC中的计算,可大为改善过去VCC系统中资源分配易出现短缺或是明明有足够多的资源却碍于有限的资源而无法分配最大量资源的情形。此外,当RSU资源未被使用时,也能成为VCC系统的常驻备用资源,亦即本强化了VCC系统的计算容量,使得VCC系统内能更分配的计算资源不易枯竭。模拟结果显示本研究所提半马可夫决策过程模型可精确刻画VCC系统之资源分配,且在不同参数设定下均可获得最佳资源分配策略。
Recently, there are many improved configurations of vehicle network with the progress of related researches and technologies, and how to use the limited resources in the vehicle network to improve the service quality of the system has become an important issue.
The concept of vehicular cloud computing (VCC) system has been built gradually. VCC system coordinates the vehicular fog (consisting of vehicles’ computing resources) and the remote cloud properly to provide in-time services to users. Although pervious works had established the models for resource allocation in the VCC system based on semi-Markov decision processes (SMDP), few of them discussed heterogeneity of vehicles and influences of roadside units (RSUs). Heterogeneous vehicles made by different manufacturers may be equipped with different amount of computing resources; and furthermore, RSU can enhance the computing capability of VCC. Therefore, this work proposes an SMDP model for VCC resource allocation that additionally considers heterogeneous vehicles and RSUs, and an approach for finding the optimal strategy of VCC resource allocation. Simulation shows that the resource allocation in the VCC system can be captured by the proposed model, which performs well in terms of long-term expected values (consisting of consumption costs of power and time), under various parameter settings.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070453323
http://hdl.handle.net/11536/141153
显示于类别:Thesis