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An energy-aware service composition algorithm for multiple cloud-based IoT applications

机译:面向多种基于云的物联网应用的能源感知服务组合算法

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There has been a shift in research towards the convergence of the Internet-of-Things (IoT) and cloud computing paradigms motivated by the need for IoT applications to leverage the unique characteristics of the cloud. IoT acts as an enabler to interconnect intelligent and self-configurable nodes "things" to establish an efficient and dynamic platform for communication and collaboration. IoT is becoming a major source of big data, contributing huge amounts of streamed information from a large number of interconnected nodes, which have to be stored, processed, and presented in an efficient, and easily interpretable form. Cloud computing can enable IoT to have the privilege of a virtual resources utilization infrastructure, which integrates storage devices, visualization platforms, resource monitoring, analytical tools, and client delivery. Given the number of things connected and the amount of data generated, a key challenge is the energy efficient composition and interoperability of heterogeneous things integrated with cloud resources and scattered across the globe, in order to create an on-demand energy efficient cloud based IoT application. In many cases, when a single service is not enough to complete the business requirement; a composition of web services is carried out. These composed web services are expected to collaborate towards a common goal with large amount of data exchange and various other operations. Massive data sets have to be exchanged between several geographically distributed and scattered services. The movement of mass data between services influences the whole application process in terms of energy consumption. One way to significantly reduce this massive data exchange is to use fewer services for a composition, which need to be created to complete a business requirement. Integrating fewer services can result in a reduction in data interchange, which in return helps in reducing the energy consumption and carbon footprint.
机译:由于物联网应用需要利用云的独特特性,促使研究朝着物联网(IoT)和云计算范例的融合发展。物联网充当使智能和可自配置的节点“事物”相互连接的推动者,从而为通信和协作建立高效,动态的平台。物联网正成为大数据的主要来源,它从大量互连的节点中贡献了大量的流信息,这些信息必须以有效且易于解释的形式进行存储,处理和呈现。云计算可使物联网拥有虚拟资源利用基础架构的特权,该基础架构集成了存储设备,可视化平台,资源监控,分析工具和客户端交付。给定连接的事物数量和生成的数据量,关键挑战是与云资源集成并分布在全球的异构事物的能效组合和互操作性,以创建按需节能的基于云的物联网应用程序。在许多情况下,当一项服务不足以完成业务需求时;进行Web服务的组合。预计这些组成的Web服务将通过大量的数据交换和各种其他操作来实现一个共同的目标。海量数据集必须在几个地理上分散的服务之间进行交换。服务之间的海量数据移动会在能耗方面影响整个应用程序过程。显着减少这种海量数据交换的一种方法是为合成使用较少的服务,需要创建这些服务才能完成业务需求。集成较少的服务可以减少数据交换,从而有助于减少能耗和碳足迹。

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