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Development and application of a real-time testbed for multiagent system interoperability: A case study on hierarchical microgrid control

机译:多主体系统互操作性实时测试平台的开发与应用:以分层微网控制为例

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This paper presents the development and application of a real-time testbed for multiagent system interoperability. As utility independent private microgrids are installed constantly, standardized interoperability frameworks are required to define behavioral models of the individual agents for expandability and plug-and-play operation. In this paper, we propose a comprehensive hybrid agent framework combining the foundation for intelligent physical agents (FIPA), IEC 61850, and data distribution service (DDS) standards. The IEC 61850 logical node concept is extended using FIPA based agent communication language (ACL) with application specific attributes and deliberative behavior modeling capability. The DDS middleware is adopted to enable a real-time publisher-subscriber interoperability mechanism between platforms. The proposed multi-agent framework was validated in a laboratory based testbed involving developed intelligent electronic device (IED) prototypes and actual microgrid setups. Experimental results were demonstrated for both decentralized and distributed control approaches. Secondary and tertiary control levels of a microgrid were demonstrated for decentralized hierarchical control case study. A consensus-based economic dispatch case study was demonstrated as a distributed control example. It was shown that the developed agent platform is industrially applicable for actual smart grid field deployment.
机译:本文介绍了用于Multiagent系统互操作性的实时测试平台的开发和应用。随着独立于实用程序的私有微电网不断安装,需要标准化的互操作性框架来定义各个代理的行为模型,以实现可扩展性和即插即用操作。在本文中,我们提出了一个综合的混合代理框架,该框架结合了智能物理代理(FIPA),IEC 61850和数据分发服务(DDS)标准的基础。 IEC 61850逻辑节点概念使用基于FIPA的代理通信语言(ACL)进行了扩展,该语言具有应用程序特定的属性和协商行为建模功能。采用DDS中间件来实现平台之间的实时发布者-订阅者互操作性机制。拟议的多主体框架已在基于实验室的试验台上得到了验证,该试验台涉及已开发的智能电子设备(IED)原型和实际的微电网设置。分散控制方法和分布式控制方法的实验结果都得到了证明。演示了微电网的二级和三级控制级别,用于分散式分层控制案例研究。演示了基于共识的经济调度案例研究,作为分布式控制示例。结果表明,开发的代理平台在工业上适用于实际的智能电网现场部署。

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