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Real-time communication for manufacturing cyber-physical systems

机译:用于制造网络物理系统的实时通信

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摘要

The cloud manufacturing yields insights of manufacturing services over cyber space based on integration of advanced manufacturing with cloud computing. However, the different communication standards between the different system levels are main challenges for the integration of them without a conflicting communication. Ethernet appears as the best solution to support all levels for industrial manufacturing systems. Since the synchronous integration is fulfilled, the prerequisite for deciding the overall performance of systems is adaptable real-time communication. This motivates us to study the problem of designing a new real-time communication based on Ethernet standard to enable real-time processing for factory networks, termed Real-Time Ethernet (RTEthernet). The objective is to schedule maximum number of machines transmitting data through a controller in a data transmission window (Coordinated Cycle) as well as guarantee the real-time communication. The problem is called the Maximum Number of Real-time Data Transmission (MNRDT) problem. Two relevant solutions are proposed for addressing the MNRDT problem. Simulation results are provided to show the performance of proposed solutions.
机译:基于先进制造与云计算的集成,云制造可提供有关网络空间制造服务的见解。但是,不同系统级别之间的不同通信标准是在没有冲突通信的情况下集成它们的主要挑战。以太网似乎是支持工业制造系统各个级别的最佳解决方案。由于实现了同步集成,因此决定系统总体性能的前提是自适应的实时通信。这促使我们研究基于以太网标准设计新的实时通信的问题,以实现工厂网络的实时处理,称为实时以太网(RTEthernet)。目的是在数据传输窗口(协调循环)中调度通过控制器传输数据的最大机器数量,并保证实时通信。该问题称为实时数据传输的最大数量(MNRDT)问题。提出了两种相关的解决方案来解决MNRDT问题。仿真结果表明了所提出解决方案的性能。

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