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首页> 外文期刊>Journal of Low Power Electronics >Real-Time Scheduling on Dynamic Resources in a Fog Computing Environment
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Real-Time Scheduling on Dynamic Resources in a Fog Computing Environment

机译:雾计算环境中动态资源的实时调度

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A multitude of computing devices are networked around us but most do not harness their computation capacity to the fullest. With this as the core motivation, Cisco delivered the vision of fog computing to run applications on local nearby devices at network edge instead of the cloud.Fog's close proximity to client devices, dense geographical distribution and support for mobility provides end users with a cheap computational resource available at very fast speeds. We extend this architecture through the inclusion of dynamic resources, each of which consists of the residualcomputing capacity of a particular edge device. Thus, edge devices are allowed to dynamically arrive into the system for an interval known a priori (at the time of their arrival) and lend a fraction of their computing capacities against financial incentives. We present a novel two level frameworkfor the symbiotic sharing and consolidation of edge computing resources targeted towards realizing a real time fog computing environment with high resource utilization. Further, the framework has been extended to imbibe profit awareness by ensuring a minimum guaranteed revenue to the fog serviceprovider. Additionally, inter-device communication delays are controlled by limiting the communication overheads in the system. Our simulation based experiments on diverse datasets have procured promising results.
机译:众多计算设备周围已联网,但大多数情况下都没有充分利用它们的计算能力。随着核心动机作为核心动机,思科提供了雾计算的愿景,以在网络边缘的当地附近设备上运行应用程序而不是Cloud.fog对客户端设备的密切接近,密集的地理分布和对移动性的支持提供了廉价计算的最终用户资源以非常快的速度提供。我们通过包含动态资源来扩展该架构,每个架构包括特定边缘设备的残余计算能力。因此,允许边缘设备动态地到达系统,以便在其到达时的间隔(在其到达时)并借出其计算能力的一小部分,而是针对财务激励措施。我们提出了一部小型两个级别框架,为具有高资源利用率的实时雾计算环境的边缘计算资源的共生共享和整合。此外,该框架已扩展到利用对雾化服务的最低保证收入来实现利润意识。另外,通过限制系统中的通信开销来控制设备间通信延迟。我们对不同数据集的基于仿真实验已采购了有希望的结果。

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