期刊文献+

家庭微网设计及经济化运行方案研究

下载PDF
导出
摘要 随着我国经济的快速发展,电力需求也越来越大,我国发电机组容量逐渐增大。美加大停电后,大规模电力系统的缺点逐渐显现出来。以可再生能源为基础建立分布式电源具有安全可靠性高、损耗低、无污染的优点,本文以可再生能源为基础搭建家庭微网,并在此基础上,结合分时电价,最终实现主动参与系统调频,并通过PSCAD仿真对上述方案进行验证。
作者 周涵笑
机构地区 西安市铁一中学
出处 《通讯世界》 2018年第8期175-177,共3页 Telecom World
  • 相关文献

参考文献1

二级参考文献23

  • 1唐西胜,邓卫,齐智平.基于储能的微网并网/离网无缝切换技术[J].电工技术学报,2011,26(S1):279-284. 被引量:79
  • 2Guerrero Josep M,Blaabjerg F,Zhelev T,et al.Distributed generation,toward a new energy paradigm[J].IEEE Industrial Electronics Magazine,2010,4(1):52-64.
  • 3Nikos Hatziargyriou,Hiroshi Asano,Reza Iravani,et al.Microgrids,An overview of ongoing research,development,and demonstration projects[J].IEEE Power & Energy Magazine,2007,5(4):78 -94.
  • 4Katiraei F,Iravani M R.Power management strategies for a microgrid with multiple distributed generation units [J].IEEE Trans.on Power Systems,2006,21(4):1832-1831.
  • 5Mohamed Y,El-Saadany E.Adaptive decentralized droop controller to preserve power sharing stability of paralleled inverters in distributed generation microgrids[J].IEEE Trans.on Power Electronics,2008,23(6):2806-2816.
  • 6Barklund E,Pogaku N,Prodanovic M,et al.Energy management in autonomous microgrid using stability-constrained droop control of inverters[J].IEEE Trans.on Power Electronics,2008,23(5):2346-2352.
  • 7Kim Jaehong,Guerrero J M,Rodriguez P,et al.Mode adaptive droop control with virtual output impedances for an inverter-based flexible AC microgrid[J].IEEE Trans.on Power Electronics,2011,26(3):689-701.
  • 8Zhuo F,Wang X W,Guo H P,et al.Research of seamless transfer control strategy of microgrid system[C]//IEEE 8th International Conference on Power Electronics and ECCE Asia.Jeju,Korea:IEEE,2011:2059-2066.
  • 9Rocabert J,Azevedo G,Candela I,et al.Microgrid connection management based on an intelligent connection agent[C]//36th Annual Conference on IEEE Industrial Electronics Society (IECON).Glendale, AZ,USA:IEEE,2010:3028-3033.
  • 10Rocabert J,Gustavo M S,Luna A,et al.Intelligent connection agent for three-phase grid-connected microgrids[J].IEEE Trans.on Power Electronics,2011,26(10):2993-3003.

共引文献96

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部