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Smart grid interoperability use cases for extending electricity storage modeling within the IEC Common Information Model

机译:智能电网互操作性用例,用于在IEC通用信息模型内扩展电力存储模型

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The IEC Common Information Model (CIM) is recognized as a core standard, supporting electricity transmission system interoperability. Packages of UML classes make up its domain ontology to enable a standardised abstraction of network topology and proprietary power system models. Since the early days of its design, the CIM has grown to reflect the widening scope and detail of utility information use cases as the desire to interoperate between a greater number of systems has increased. The cyber-physical nature of the smart grid places even greater demand upon the CIM to model future scenarios for power system operation and management that are starting to arise. Recent developments of modern electricity networks have begun to implement electricity storage (ES) technologies to provide ancillary balancing services, useful to grid integration of large-scale renewable energy systems. In response to this we investigate modeling of grid-scale electricity storage, by drawing on information use cases for future smart grid operational scenarios at National Grid, the GB Transmission System Operator. We find current structures within the CIM do not accommodate the informational requirements associated with novel ES systems and propose extensions to address this requirement.
机译:IEC公共信息模型(CIM)被认为是支持电力传输系统互操作性的核心标准。 UML类的软件包组成其域本体,以实现网络拓扑和专有电源系统模型的标准化抽象。自设计之初以来,随着对更多系统之间进行互操作的需求,CIM不断发展壮大,以反映公用事业信息用例的不断扩大的范围和细节。智能电网的网络物理性质对CIM提出了更高的要求,以对未来开始出现的电力系统运行和管理进行建模。现代电力网络的最新发展已经开始实施电力存储(ES)技术,以提供辅助的平衡服务,这对大规模可再生能源系统的电网整合非常有用。为此,我们利用GB传输系统运营商National Grid上未来智能电网运行场景的信息用例,来研究电网规模的蓄电模型。我们发现CIM中的当前结构不适应与新型ES系统相关的信息要求,并提出扩展以解决此要求。

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