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Dynamical modelling of a DC microgrid using a port-Hamiltonian formalism

机译:使用Port-Hamiltonian形式主义的DC微电网的动态建模

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This paper presents the dynamical model of a DC microgrid, composed by a solar panel, an energy storage system, a utility grid and a group of interconnected loads, such as housing-office equipment and electrical vehicles. The transmission lines connect the energy sources with the loads through the corresponding switching DC/DC converters. The novelty resides in the port-Hamiltonian formulations developed for the physical model which is first described through a Bond Graph. An extended architecture of the system with a meshed topology is presented. The proposed architecture has the ability to reduce the power losses within the DC microgrid system by increasing the different transmission line paths among the sources and the loads. The global dynamical model of the system is finally converted into a state-space representation. Furthermore, in view of system control and optimization we formulate the load balancing problem of the DC microgrid in order to stabilize the power flow within the DC bus. The model is validated with some primary simulations.
机译:本文介绍了由太阳能电池板,能量存储系统,公用电网和一组互连负载组成的DC微电网的动态模型,例如住宅办公设备和电动车辆。传输线通过相应的开关DC / DC转换器将能量源与负载连接。新颖性驻留在为由键盘图中首先描述的物理模型开发的端口Hamiltonian配方中。提出了具有网状拓扑结构的系统的扩展架构。所提出的体系结构通过增加源和负载之间的不同传输线路路径来降低DC微电网系统内的功率损耗。最终将系统的全局动态模型转换为状态空间表示。此外,考虑到系统控制和优化,我们制定了DC微电网的负载平衡问题,以稳定直流总线内的功率流。该模型验证了一些主要模拟。

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