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Hybrid computation offloading in fog and cloud networks with non-orthogonal multiple access

机译:具有非正交多路访问的雾和云网络中的混合计算分流

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Fog Computing is proposed as a promising technique that extends the computing infrastructure from the cloud center to the network edge. To enable applications to offload efficiently, the multiple resource allocation, including computation, spectrum, and energy resource as well as user scheduling, plays a quite important role in future networks. However, due to the constrained computing, storage and radio resource of fog nodes (FNs), the multiple resource allocation would be a fundamental problem and it should be well investigated. Thus, in this paper, we focus on this problem in a general multi-user multi-FN system with a remote cloud in small cell networks, where each user has multiple independent tasks that can be executed at FNs or at the remote cloud. The multiple FNs are response for performing the task distribution, user scheduling, and resource allocation dynamically and independently. Furthermore, to reduce offloading transmission latency and release the constraint of the limited radio resource, non-orthogonal multiple access (NOMA), which enables the multiple users to transmit data to the same FN on the same radio resource, is introduced into fog and cloud networks. To this end, we formulate the offloading decision, user scheduling, and resource allocation problem as an optimization problem. Our objective is to minimize the total system cost of energy as well as the delay of users. Furthermore, we transform the original problem into a convex problem and then decompose it in a distributed and efficient way. Simulation results show that the proposed approach achieves a better performance compared with existing schemes.
机译:提出雾计算是一种很有前途的技术,它将计算基础架构从云中心扩展到网络边缘。为了使应用程序高效卸载,包括计算,频谱和能源资源以及用户调度在内的多种资源分配在未来的网络中扮演着非常重要的角色。但是,由于雾节点(FN)的计算,存储和无线电资源受限,因此多资​​源分配将是一个基本问题,应进行充分研究。因此,在本文中,我们将重点放在小型蜂窝网络中具有远程云的通用多用户多FN系统中,该问题中的每个用户都有可以在FN或远程云上执行的多个独立任务。多个FN是用于动态且独立地执行任务分配,用户调度和资源分配的响应。此外,为了减少卸载传输延迟并释放受限无线电资源的限制,将使多个用户能够在同一无线电资源上将数据传输到同一FN的非正交多址访问(NOMA)被引入到雾和云中网络。为此,我们将卸载决策,用户调度和资源分配问题表述为优化问题。我们的目标是最大程度地减少能源的总系统成本以及用户的延迟。此外,我们将原始问题转换为凸问题,然后以分布式有效的方式对其进行分解。仿真结果表明,与现有方案相比,该方案具有更好的性能。

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