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Multi-agent cognitive architecture-enabled loT applications of mobile edge computing

机译:支持多代理认知架构的移动边缘计算的loT应用

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Mobile edge computing (MEC) offers cloud capabilities and service environment for Internet-of-Things (IoT) applications at the edge of the mobile network. New services for a specific set of IoT application programming interfaces (APIs) of diversified industry verticals can efficiently be deployed. As the set of APIs based on the IoT continues to thrive, reliance on the underlying cloud computing to deliver real-time and context-based services is also prominent in MEC. Due to the increased level of mutual interference of IoT APIs, the complexities are also multiplied. The set of IoT APIs competes for available resources within heterogeneous clouds (HCs). It is further aggravated by the unprecedented number of connected devices. We are presenting a cognitive agent (CA)-oriented approach to proactively subordinate IoT APIs with HCs. This paper contributes to establish an empirical multi-agent cognitive architecture framework (MCAF) for continuous transition of IoT APIs. We identified an adaptable composition method and a classification technique for CAs during this research effort. It introduces rationalization of CA creation, migration, and control. The approach achieves transparency in the heterogeneity and distribution of IoT APIs. It provides dynamism of cloud computing environments. The paper also illustrates the architecture impact analysis with the indicative capabilities of auto-scaling, predictability in HCs’ resource use, and responsiveness and attainment of IoT APIs.
机译:移动边缘计算(MEC)为移动网络边缘的物联网(IoT)应用程序提供了云功能和服务环境。可以有效地部署针对多元化行业垂直领域的特定IoT应用程序编程接口(API)集的新服务。随着基于IoT的API集的不断发展,在MEC中,依靠底层云计算来提供实时和基于上下文的服务也很重要。由于物联网API相互干扰的程度不断提高,复杂性也成倍增加。 IoT API集争夺异构云(HC)中的可用资源。前所未有的连接设备数量进一步加剧了这种情况。我们正在提出一种面向认知代理(CA)的方法,以通过HC主动从属IoT API。本文为建立物联网API的连续过渡的经验多主体认知架构框架(MCAF)做出了贡献。在这项研究工作中,我们确定了适用于CA的适应性合成方法和分类技术。它介绍了CA创建,迁移和控制的合理化。该方法实现了IoT API异构和分布的透明性。它提供了云计算环境的活力。本文还说明了架构影响分析,该分析具有指示性的自动缩放功能,HC资源使用的可预测性以及IoT API的响应能力和实现能力。

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