实现自组织、协作物联网资源网络的软件架构

T. Lewandowski, Dominic Henze, M. Sauer, J. Nickles, B. Bruegge
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引用次数: 5

摘要

近年来,工业世界正面临着一个重大的变化,从使用成熟的技术为一个经过充分分析的场景设计和配置的组件和系统,到不断引入最新技术并能够处理不断变化的用例环境的高度动态系统的需求。因此,对于如何设计和设置这样的系统,需要新的方法。其中一种方法是协作物联网,其重点是研究必要的设计、基础设施和技术,以构建松散耦合的生态系统,自主系统以特别的方式进行交互,并根据需要建立服务组合和新的分布式应用程序。本文提出了工业物联网系统的软件架构设计,以实现这些目标,并提供了一个参考实现,展示了在协作物联网智能工厂场景中架构设计的可行性。开发的AiB架构使异构物联网系统能够形成任务执行生态系统,通过跨参与设备创建服务组合来动态处理新传入的任务,这些任务在设计时未定义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Software Architecture to enable Self-Organizing, Collaborative IoT Ressource Networks
Since recent years, the industrial world is facing a significant change from components and systems that are designed and configured for one well-analyzed scenario using well-established technologies to a demand for highly dynamic systems that continuously introduce the latest technologies and are capable of handling ever-changing use case environments. Thus, there is a need for new approaches on how to design and setup such systems. One of these approaches is Collaborative IoT, which focuses on researching the necessary designs, infrastructure, and technology to build ecosystems of loosely coupled, autonomous systems that interact in an ad-hoc fashion and establish service compositions and new distributed applications on demand. This paper presents a software architecture design for Industrial IoT systems to approach these targets as well as a reference implementation showing the feasibility of the architectural design in a Collaborative IoT smart factory scenario. The developed AiB architecture enables heterogeneous IoT systems to form task execution ecosystems that dynamically address new incoming tasks by creating service compositions across participating devices, which were not defined during design time.
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