首页> 外文期刊>Energies >International Electronical Committee (IEC) 61850 Mapping with Constrained Application Protocol (CoAP) in Smart Grids Based European Telecommunications Standard Institute Machine-to-Machine (M2M) Environment
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International Electronical Committee (IEC) 61850 Mapping with Constrained Application Protocol (CoAP) in Smart Grids Based European Telecommunications Standard Institute Machine-to-Machine (M2M) Environment

机译:基于欧洲电信标准协会机器对机器(M2M)环境的基于智能电网的受约束应用协议(CoAP)的国际电子委员会(IEC)61850

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摘要

As power systems develop rapidly into smarter and more flexible configurations, so too must the communication technologies that support them. Machine-to-machine (M2M) communication in power systems enables information collection by combining sensors and communication protocols. In doing so, M2M technology supports communication between machines to improve power quality and protection coordination. When functioning in a “smart grid” environment, M2M has been labelled by the European Telecommunications Standard Institute (ETSI). International Electronical Committee (IEC) 61850 as the most important standard in power network systems. As evidence, this communication platform has been used for device data collection/control in substation automation systems and distribution automation systems. If the IEC 61850 information model were to be combined with a set of contemporary web protocols, the potential benefits would be enormous. Therefore, a constrained application protocol (CoAP) has been adopted to create an ETSI M2M communication architecture. CoAP is compared with other protocols (MQTT, SOAP) to demonstrate the validity of using it. This M2M communication technology is applied in an IEC61850, and use the OPNET Modeler 17.1 to demonstrate intercompatibility of CoAP Gateway. The proposed IEC 61850 and CoAP mapping scheme reduces the mapping time and improves throughput. CoAP is useful in the ETSI M2M environment where device capability is able to be limited.
机译:随着电力系统迅速发展为更智能,更灵活的配置,支持它们的通信技术也必须如此。电力系统中的机器对机器(M2M)通信通过结合传感器和通信协议来实现信息收集。通过这样做,M2M技术支持机器之间的通信,以改善电源质量和保护协调。在“智能电网”环境中运行时,M2M已被欧洲电信标准协会(ETSI)标记。国际电子委员会(IEC)61850是电力网络系统中最重要的标准。作为证明,该通信平台已用于变电站自动化系统和配电自动化系统中的设备数据收集/控制。如果将IEC 61850信息模型与一组现代Web协议结合使用,则潜在的好处将是巨大的。因此,已采用约束应用协议(CoAP)来创建ETSI M2M通信体系结构。 CoAP与其他协议(MQTT,SOAP)进行了比较,以证明使用CoAP的有效性。此M2M通信技术应用于IEC61850中,并使用OPNET Modeler 17.1演示了CoAP网关的兼容性。提出的IEC 61850和CoAP映射方案减少了映射时间并提高了吞吐量。 CoAP在可能限制设备功能的ETSI M2M环境中很有用。

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