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Integration of Distributed Energy Resources in the Grid by Applying International Standards to the Inverter as a Multifunctional Grid Interface

机译:通过将国际标准应用于变频器作为多功能网格界面来集成网格中的分布式能源资源

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Distributed Energy Resources (DERs) are rapidly penetrating in power systems including their accompanying software and hardware (SW/HW) systems that are also distributed and related to different manufacturers and owners. Information integration and interoperability are two problems in distributed systems. This paper presents a comparison between the available integration middleware and standards for inter-application interoperability of distributed SW/HW systems accompanying DERs such as Common Object Request Broker Architecture (CORBA), Web Services, multiagent systems (MASs), and recently IEC 61850. In addition, the paper shows the possibility of mapping the information objects of IEC 61850 to the data objects of legacy SCADA protocols for physical control and integration of DERs interfaces, namely inverters, into the future Smart Grid over IP-based networks, to achieve inter-device and device-to-application interoperability. Moreover, billing functionality can be added to the inverter to count for injected power into the Smart Grid, and hence the inverter has business-related functions.
机译:分布式能源(分布式能源)正迅速渗透在电力系统中,包括其附带的软件和硬件(SW / HW),其也有分布,并与不同的制造商和业主的系统。信息集成和互操作性是在分布式系统中的两个问题。本文提出了一种伴随分布式能源分布式软件/硬件系统,如公共对象请求代理体系结构(CORBA),Web服务,多智能体系统(质量),以及最近IEC 61850的应用程序间的互操作性提供集成中间件和标准之间的比较。此外,本文示出了IEC 61850的信息对象映射到所述数据的可能性的物理控制和分布式能源的接口,即逆变器集成遗留SCADA协议对象,进入未来智能电网通过基于IP的网络中,实现跨-device和设备到应用的互操作性。此外,计费功能可以被添加到逆变器计数注入功率到智能电网,因此变频器业务相关的功能。

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