引用本文:陈和升,卫志农,沈海平,孙国强,臧海祥,孙永辉.基于序分量的孤岛交直流混联微电网三相解耦潮流算法[J].电力自动化设备,2017,37(9):
CHEN Hesheng,WEI Zhinong,SHEN Haiping,SUN Guoqiang,ZANG Haixiang,SUN Yonghui.Three-phase decoupled power-flow algorithm based on sequence components of islanded hybrid AC/DC microgrid[J].Electric Power Automation Equipment,2017,37(9):
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基于序分量的孤岛交直流混联微电网三相解耦潮流算法
陈和升1, 卫志农1, 沈海平2, 孙国强1, 臧海祥1, 孙永辉1
1.河海大学 能源与电气学院,江苏 南京 211100;2.国网无锡供电公司,江苏 无锡 214061
摘要:
针对交直流混联微电网这类新型网络的潮流分析问题,建立了Droop型分布式电源以及AC/DC 逆变器并网稳态潮流模型,并根据并网点电压对称进行三相、单相并网模型的相序分量转换。利用序电流补偿法将AC子网解耦为三序网络且并行求解,显著减小了问题求解规模;进一步建立了AC/DC逆变器两侧交流频率和直流电压耦合关系,有效解决了两子网间功率平衡问题。在序分量体系下提出了适用于直流微电网多种方式接入的孤岛交直流混联微电网三相解耦潮流算法,基于IEEE等标准配电系统的修改算例,验证了所提算法的有效性、适用性以及高计算效率。
关键词:  序分量  孤岛微电网  分布式电源  三相解耦  交直流混联  潮流
DOI:10.16081/j.issn.1006-6047.2017.09.005
分类号:TM727;TM744
基金项目:国家自然科学基金资助项目(51277052,51507052);中国博士后科学基金资助项目(2015M571653);中央高校基本科研业务费资助项目(2015B02714)
Three-phase decoupled power-flow algorithm based on sequence components of islanded hybrid AC/DC microgrid
CHEN Hesheng1, WEI Zhinong1, SHEN Haiping2, SUN Guoqiang1, ZANG Haixiang1, SUN Yonghui1
1.College of Energy and Electrical Engineering, Hohai University, Nanjing 211100, China;2.State Grid Wuxi Power Supply Company, Wuxi 214061, China
Abstract:
For analyzing the power flow of hybrid AC/DC microgrid, the steady-state power-flow models of Droop-type DG(Distributed Generation) and grid-connected AC/DC inverter are established and the phase-sequence component conversions based on the voltage symmetry of grid-connecting point are carried out for the three-phase and single-phase grid-connection models. The sequence current compensation method is applied to decouple the AC network into three sequence networks to greatly reduce the solving scale, and the relations of coupling between AC frequency and DC voltage are constructed for both sides of AC/DC inverter to effectively maintain the power balance between two sub-networks. A three-phase decoupled power-flow algorithm suitable for different integration modes of DC network is proposed based on the sequence components of islanded hybrid AC/DC mircogrid. The proposed algorithm is applied to different modified IEEE standard distribution systems, verifying its effectiveness, applicability and efficiency.
Key words:  sequence component  islanded microgrid  distributed power generation  three-phase decoupling  hybrid AC/DC interlinking  power flow

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