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Fog Computing for Sustainable Smart Cities: A Survey

机译:可持续智慧城市的雾计算:一项调查

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The Internet of Things (IoT) aims to connect billions of smart objects to the Internet, which can bring a promising future to smart cities. These objects are expected to generate large amounts of data and send the data to the cloud for further processing, especially for knowledge discovery, in order that appropriate actions can be taken. However, in reality sensing all possible data items captured by a smart object and then sending the complete captured data to the cloud is less useful. Further, such an approach would also lead to resource wastage (e.g., network, storage, etc.). The Fog (Edge) computing paradigm has been proposed to counterpart the weakness by pushing processes of knowledge discovery using data analytics to the edges. However, edge devices have limited computational capabilities. Due to inherited strengths and weaknesses, neither Cloud computing nor Fog computing paradigm addresses these challenges alone. Therefore, both paradigms need to work together in order to build a sustainable IoT infrastructure for smart cities. In this article, we review existing approaches that have been proposed to tackle the challenges in the Fog computing domain. Specifically, we describe several inspiring use case scenarios of Fog computing, identify ten key characteristics and common features of Fog computing, and compare more than 30 existing research efforts in this domain. Based on our review, we further identify several major functionalities that ideal Fog computing platforms should support and a number of open challenges toward implementing them, to shed light on future research directions on realizing Fog computing for building sustainable smart cities.
机译:物联网(IoT)旨在将数十亿个智能对象连接到Internet,这可以为智能城市带来光明的未来。预期这些对象会生成大量数据,并将数据发送到云以进行进一步处理,尤其是用于知识发现,以便可以采取适当的措施。然而,实际上,感测由智能对象捕获的所有可能的数据项,然后将完整的捕获数据发送到云是没有多大用处的。此外,这种方法还将导致资源浪费(例如,网络,存储等)。通过将使用数据分析的知识发现过程推向边缘,人们提出了雾(Edge)计算范例来弥补这一弱点。但是,边缘设备的计算能力有限。由于继承的优势和劣势,云计算和雾计算范式都无法单独解决这些挑战。因此,这两种范式需要一起工作才能为智能城市构建可持续的物联网基础设施。在本文中,我们回顾了已提出的解决雾计算领域挑战的现有方法。具体来说,我们描述了几种令人激动的Fog计算用例场景,确定了Fog计算的十个关键特征和共同特征,并比较了该领域现有的30多项研究成果。根据我们的评论,我们进一步确定理想的Fog计算平台应支持的几个主要功能,以及在实现这些功能时面临的许多公开挑战,以阐明实现Fog计算以构建可持续智慧城市的未来研究方向。

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