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作 者:丁银[1] 丁明[1] 毕锐[1] 高研[1] 杨为[1]
机构地区:[1]合肥工业大学教育部光伏系统工程研究中心,安徽合肥230009
出 处:《电力系统保护与控制》2010年第9期37-42,共6页Power System Protection and Control
基 金:国家重点基础研究专项经费项目(2009CB219700);国家863高技术基金项目(2007AA05Z240);国家自然科学基金(50837001)~~
摘 要:建立基于公共信息模型(CIM)的微电网系统,不仅可以实现高效率的数据交换和'即插即用'的应用程序,而且也便于系统模型的扩展。针对合肥工业大学微电网实验室,在研究扩展的分布式各发电单元具体模型的基础上,提出了微电网各发电单元的CIM模型,为了便于在潮流计算等应用程序中使用此模型,总结了微电网各发电单元的节点类型,并分析了针对实验室的导电设备的模型,以CIM中的拓扑模型和设备容器模型建立简单的物理连接和设备的总体联系模型,并用XML语言描述了微电网的整体模型。最后采用潮流计算进行验证性实验,验证了对CIM理解的正确性和导入导出的正确性。The establishment ofmicrogrid system based on common information model (CIM), can not only realize high efficient data exchange and the "plug and play" application, but also can make the expansion of the system model easier. This paper, aiming at microgrid laboratory of Hefei University of Technology, based on the research on the practical models of generation units in distributed generation, advances CIM model of generation units in microgrid system. In order to make use of this model in power-flow calculation and so on, it summarizes the node types in the generation units of microgrid system and analyzes the models of conduction devices aiming at laboratory. With the topology model in CIM and equipment container model, it establishes simply physical connection and overall connecting model of devices as well as describes the general model in XML language. Finally, by adopting power flow calculation, the correctness of the understanding to CIM and import/export is validated. This work is supported by Chinese National Programs for High Technology Research and Development(863 program)(No.2007AA05Z240) and National Natural Science Foundation of China(No.50837001).
分 类 号:TM744[电气工程—电力系统及自动化]
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