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Component-Based Modelling for Scalable Smart City Systems Interoperability: A Case Study on Integrating Energy Demand Response Systems

机译:基于组件的可扩展智能城市系统互操作性建模:以整合能源需求响应系统为例

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Smart city systems embrace major challenges associated with climate change, energy efficiency, mobility and future services by embedding the virtual space into a complex cyber-physical system. Those systems are constantly evolving and scaling up, involving a wide range of integration among users, devices, utilities, public services and also policies. Modelling such complex dynamic systems’ architectures has always been essential for the development and application of techniques/tools to support design and deployment of integration of new components, as well as for the analysis, verification, simulation and testing to ensure trustworthiness. This article reports on the definition and implementation of a scalable component-based architecture that supports a cooperative energy demand response (DR) system coordinating energy usage between neighbouring households. The proposed architecture, called refinement of Cyber-Physical Component Systems (rCPCS), which extends the refinement calculus for component and object system (rCOS) modelling method, is implemented using Eclipse Extensible Coordination Tools (ECT), i.e., Reo coordination language. With rCPCS implementation in Reo, we specify the communication, synchronisation and co-operation amongst the heterogeneous components of the system assuring, by design scalability and the interoperability, correctness of component cooperation.
机译:通过将虚拟空间嵌入到复杂的网络物理系统中,智慧城市系统将应对与气候变化,能源效率,移动性和未来服务相关的重大挑战。这些系统在不断发展和扩大,涉及用户,设备,公用事业,公共服务以及策略之间的广泛集成。对这样复杂的动态系统的体系结构进行建模,对于开发和应用技术/工具以支持新组件集成的设计和部署,以及进行分析,验证,仿真和测试以确保可信赖性而言,始终至关重要。本文报告了基于可扩展组件的体系结构的定义和实现,该体系结构支持协作式能源需求响应(DR)系统,该系统可协调相邻家庭之间的能源使用。所提出的架构称为网络物理组件系统(rCPCS)的改进,它扩展了组件和对象系统(rCOS)建模方法的改进演算,是使用Eclipse可扩展协调工具(ECT)(即Reo协调语言)实现的。通过Reo中的rCPCS实现,我们通过设计可伸缩性和组件协作的互操作性,正确性,来指定系统异构组件之间的通信,同步和协作。

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