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An Architecture Framework for Orchestrating Context-Aware IT Ecosystems: A Case Study for Quantitative Evaluation

机译:编排上下文感知IT生态系统的体系结构框架:以定量评估为例

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摘要

With the emergence of various forms of smart devices and new paradigms such as the Internet of Things (IoT) concept, the IT (Information Technology) service areas are expanding explosively compared to the provision of services by single systems. A new system operation concept that has emerged in accordance with such technical trends is the IT ecosystem. The IT ecosystem can be considered a special type of system of systems in which multiple systems with various degrees of autonomy achieve common goals while adapting to the given environment. The single systems that participate in the IT ecosystem adapt autonomously to the current situation based on collected data from sensors. Furthermore, to maintain the services supported by the whole IT ecosystem sustainably, the configuration of single systems that participate in the IT ecosystem also changes appropriately in accordance with the changed situation. In order to support the IT ecosystem, this paper proposes an architecture framework that supports dynamic configuration changes to achieve the goal of the whole IT ecosystem, while ensuring the autonomy of single systems through the collection of data from sensors so as to recognize the situational context of individual participating systems. For the feasibility evaluation of the proposed framework, a simulated example of an IT ecosystem for unmanned forest management was constructed, and the quantitative evaluation results are discussed in terms of the extent to which the proposed architecture framework can continuously provide sustainable services in response to diverse environmental context changes.
机译:随着各种形式的智能设备的出现和诸如物联网(IoT)概念的新范例,与单系统提供服务相比,IT(信息技术)服务领域正在爆炸性地扩展。根据这种技术趋势出现的新的系统操作概念是IT生态系统。可以将IT生态系统视为一种特殊类型的系统,其中具有不同自治程度的多个系统可以在适应给定环境的同时达到共同的目标。参与IT生态系统的单个系统根据从传感器收集的数据自动适应当前情况。此外,为了可持续地维护整个IT生态系统所支持的服务,参与IT生态系统的单个系统的配置也会根据变化的情况进行适当的更改。为了支持IT生态系统,本文提出了一种体系结构框架,该框架支持动态配置更改以实现整个IT生态系统的目标,同时通过从传感器收集数据来确保单个系统的自治性,从而识别情况上下文。各个参与系统。为了对提议的框架进行可行性评估,构建了用于无人森林管理的IT生态系统的模拟示例,并根据提议的架构框架可以在多大程度上持续提供可持续服务以应对各种变化的情况,讨论了定量评估结果。环境环境的变化。

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