支持分布式控制系统中自主对象的独立开发、部署和合作

J. Kaiser, S. Zug, M. Schulze, L. Becker
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引用次数: 2

摘要

智能传感器和执行器等自主、主动组件提供自发行为、并发计算和定义良好的通信接口的能力。然而,从这些活动块构建系统的观点对组件的建模和部署以及在运行时支持它们的交互有影响。提出了一种动态交互自治对象的建模方法,解决了自主开发、部署和增量扩展问题。与相关方法相比,我们的概念通过一个适当的中间件进一步补充了建模,该中间件在运行时支持模型的抽象,并在对象之间执行相应的动态绑定和合作。这为动态集成硬件和软件组件以及支持虚拟传感器和执行器提供了广泛的可能性。
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Supporting independent development, deployment and co-operation of autonomous objects in distributed control systems
Autonomous, active components like smart sensors and actuators offer the capabilities of spontaneous behaviour, concurrent computations and well-defined communication interfaces. The perspective of building a system from such active blocks however has an impact on modeling and deployment of the components and supporting their interaction at run-time. The paper presents a modeling approach for dynamically interacting autonomous objects addressing the problems of independent development, deployment and incremental extension. Compared to related approaches our concept further complements the modeling by an adequate middleware that supports the abstractions of the model during run-time and performs the respective dynamic binding and co-operation between objects. This opens a wide range of possibilities for dynamically integrating hardware and software components and support virtual sensors and actuators.
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