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The CoAP-based M2M gateway for distribution automation system using DNP3.0 in smart grid environment

机译:在智能电网环境中使用DNP3.0的基于CoAP的M2M网关,用于配电自动化系统

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As a power system develops rapidly into a smarter and more flexible state, so must the communication technologies that support it. Machine-to-machine (M2M) communication in a Smart Grid environment has been discussed by the European Telecommunications Standards Institute (ETSI). A power system is not easily replaceable, due to system replacement costs. THE M2M gateway is required in other to improve interoperability in the M2M environment. The Distributed Network Protocol 3.0 (DNP3.0) is the most important standard in SCADA systems for power. It has been used for device data collection/control in Substation Systems and Distribution Automation Systems. If the DNP3.0 data model is combined with a set of contemporary web protocols, it can result in a significant shift. We selected the Constrained Application Protocol (CoAP) based on RESTful as the M2M protocol. It is a specialized web transfer protocol for use with constrained nodes and constrained networks. We used the OPNET Modeler 17.1 to compare the performance of Simple Object Access Protocol (SOAP) to that of CoAP. In this paper, we propose a CoAP-based M2M Gateway for a Distribution Automation system using DNP3.0 in a Smart Grid Environment.
机译:随着电源系统迅速发展为更智能,更灵活的状态,支持它的通信技术也必须如此。欧洲电信标准协会(ETSI)已经讨论了智能电网环境中的机器对机器(M2M)通信。由于系统更换成本,电源系统不容易更换。另外,还需要M2M网关来改善M2M环境中的互操作性。分布式网络协议3.0(DNP3.0)是SCADA系统中最重要的电源标准。它已用于变电站系统和配电自动化系统中的设备数据收集/控制。如果DNP3.0数据模型与一组现代Web协议结合使用,则可能会导致重大变化。我们选择基于RESTful的约束应用协议(CoAP)作为M2M协议。它是一种专用的Web传输协议,可用于受约束的节点和受约束的网络。我们使用OPNET Modeler 17.1将简单对象访问协议(SOAP)的性能与CoAP的性能进行了比较。在本文中,我们为在智能电网环境中使用DNP3.0的配电自动化系统提出了一个基于CoAP的M2M网关。

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