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Leveraging fog and cloud computing for efficient computational offloading

机译:利用雾和云计算以获得有效的计算卸载

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Fog computing [1], [2], also known as edge computing, is an emerging Internet of Things (IoT)-centric paradigm in which traditionally cloud-based data storage, computation, and control are brought closer to the end devices. The fog layer comprises smart gateways, routers, and the end devices themselves, and can be viewed as a “descended cloud” to efficiently serve nearby clients (Figure 1). By virtue of its proximity, the fog has the potential to provide low-latency data processing for devices with stringent delay requirements, and can be coupled with the cloud's economy of scale to serve more intensive computing needs. The ability of the fog to accomodate real-time tasks makes it particularly attractive for time-sensitive applications such as wireless sensor networks and internet-connected vehicles [3]. By contrast, most cloud data centers are located near the core of the network, and therefore offer unacceptable round-trip latencies to devices at the network edge.
机译:雾计算[1],[2],也称为边缘计算,是一种新兴的东西互联网(物联网) - 集中的范例,其中传统上基于云的数据存储,计算和控制越接近终端设备。 FOG层包括智能网关,路由器和最终设备本身,并且可以被视为“降云”,以有效地为附近的客户提供服务(图1)。凭借其接近度,雾具有为具有严格延迟要求的设备提供低延迟数据处理,并且可以与云的规模经济相结合,以满足更密集的计算需求。 FOG通过实时任务的能力使其对无线传感器网络和互联网连接的车辆(如无线传感器网络)的时间敏感的应用特别有吸引力[3]。相比之下,大多数云数据中心位于网络的核心附近,因此为网络边缘的设备提供了不可接受的往返延迟。

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