...
首页> 外文期刊>Protection and Control of Modern Power Systems >Stability analysis and decentralized control of inverter-based ac microgrid
【24h】

Stability analysis and decentralized control of inverter-based ac microgrid

机译:基于逆变器的AC微电网的稳定性分析和分散控制

获取原文
           

摘要

This work considers the problem of decentralized control of inverter-based ac micro-grid in different operation modes. The main objectives are to (i) design decentralized frequency and voltage controllers, to gather with power sharing, without information exchange between microsources (ii) design passive dynamic controllers which ensure stability of the entire microgrid system (iii) capture nonlinear, interconnected and large-scale dynamic of the micro-grid system with meshed topology as a port-Hamiltonian formulation (iv) expand the property of shifted-energy function in the context of decentralized control of ac micro-grid (v) analysis of system stability in large signal point of view. More precisely, to deal with nonlinear, interconnected and large-scale structure of micro-grid systems, the port-Hamiltonian formulation is used to capture the dynamic of micro-grid components including microsource, distribution line and load dynamics as well as interconnection controllers. Furthermore, to deal with large signal stability problem of the microgrid system in the grid-connected and islanded conditions, the shifted-Hamiltonian energy function is served as a storage function to ensure incremental passivity and stability of the microgrid system. Moreover, it is shown that the aggregating of the microgrid dynamic and the decentralized controller dynamics satisfies the incremental passivity. Finally, the effectiveness of the proposed controllers is evaluated through simulation studies. The different scenarios including grid-connected and islanded modes as well as transition between both modes are simulated. The simulation conforms that the decentralized control dynamics are suited to achieve the desired objective of frequency synchronization, voltage control and power sharing in the grid-connected and islanded modes. The simulation results demonstrate the effectiveness of the proposed control strategy.
机译:这项工作考虑了不同操作模式下基于逆变器的交流微电网的分散控制问题。主要目标是(i)设计分散的频率和电压控制器,以电力共享收集,无需在微电源(ii)设计被动动态控制器之间的信息交换,确保整个微电网系统(III)捕获非线性,互联和大的稳定性带有网状拓扑的微电网系统的微观动态作为端口 - 汉密尔顿的配方(iv)扩大了在大信号中分散控制的分散控制中的移动 - 能量功能的性质观点看法。更确切地说,为了处理非线性,互联和大规模结构的微电网系统,端口 - 哈密尔顿的配方用于捕获微电网组件的动态,包括显微源,分配线和负载动力学以及互连控制器。此外,为了处理电网连接和岛状条件中微电网系统的大信号稳定性问题,换档 - 哈密顿能量功能被用作存储功能,以确保微电网系统的增量速率和稳定性。此外,示出了微电网动态和分散控制器动态的聚合满足了增量的传奇。最后,通过模拟研究评估所提出的控制器的有效性。模拟包括网格连接和岛状模式的不同场景以及两种模式之间的转换。仿真符合分散的控制动态非常适合于在网格连接和岛状模式下实现频率同步,电压控制和电力共享的所需目标。仿真结果表明了提出的控制策略的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号