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Contract-theoretic Approach for Delay Constrained Offloading in Vehicular Edge Computing Networks

机译:车辆边缘计算网络中延迟约束卸载的契约理论方法

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Mobile Edge Computing (MEC) is a promising solution to improve vehicular services through offloading computation to cloud servers in close proximity to mobile vehicles. However, the self-interested nature together with the high mobility characteristic of the vehicles make the design of the computation offloading scheme a significant challenge. In this paper, we propose a new Vehicular Edge Computing (VEC) framework to model the computation offloading process of the mobile vehicles running on a bidirectional road. Based on this framework, we adopt a contract theoretic approach to design optimal offloading strategies for the VEC service provider, which maximize the revenue of the provider while enhancing the utilities of the vehicles. To further improve the utilization of the computing resources of the VEC servers, we incorporate task priority distinction as well as additional resource providing into the design of the offloading scheme, and propose an efficient VEC server selection and computing resource allocation algorithm. Numerical results indicate that our proposed schemes greatly enhance the revenue of the VEC provider, and concurrently improve the utilization of cloud computing resources.
机译:移动边缘计算(MEC)是一种有前途的解决方案,可通过将计算任务转移到与移动车辆紧邻的云服务器上来改善车辆服务。然而,车辆的自利性和高机动性使计算分流方案的设计成为一项重大挑战。在本文中,我们提出了一种新的车辆边缘计算(VEC)框架,以对在双向道路上行驶的移动车辆的计算卸载过程进行建模。在此框架的基础上,我们采用合同理论方法为VEC服务提供商设计最佳的卸载策略,该策略可以最大程度地提高提供商的收入,同时提高车辆的实用性。为了进一步提高VEC服务器计算资源的利用率,我们将任务优先级区分以及额外的资源提供纳入了卸载方案的设计中,并提出了一种有效的VEC服务器选择和计算资源分配算法。数值结果表明,我们提出的方案大大提高了VEC提供商的收入,同时提高了云计算资源的利用率。

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