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The Power Control of Power Electronic Transformer in Hybrid AC-DC Microgrid |
Lan Zheng, Tu Chunming, Xiao Fan, Ge Jun, Xiong Songhui |
National Electric Power Conversion Control Engineering Technology Research Center Hunan University Changsha 410082 China |
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Abstract The power electronic transformer (PET),which is applied in a hybrid AC-DC microgrid,is analyzed including grid-connected mode and islanded mode.Appropriate power control strategies are designed accordingly.In grid-connected mode,by controlling the input of PET,the hybrid AC-DC microgrid is equivalent to the resistive load or the current source,and the AC and DC output of PET is equivalent to the voltage sources.In islanded mode,a hybrid power droop control method is presented.The required exchange power between the AC and DC microgrid can be obtained with the frequency and voltage at the interface considering the droop features of hybrid AC-DC microgrid.The simulation model of AC-DC microgrid and PET are built to analyze the power fluctuations of the distributed energy in microgrid.The results show that the power flow can be coordinated by PET among main grid,AC microgrid,and DC microgrid with the proposed control strategy.The stability of AC-DC microgrid has been ensured and thus the validity of the suggested method has been proved.
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Received: 31 May 2015
Published: 18 December 2015
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[1] Lasseter R H,Paigi P.Microgrid:a conceptual solution[C].2004 IEEE 35th Annual Power Electronics Specialists Conference,Aachen,2004,6:4285-4290. [2] Katiraei F,Iravani M R.Power management strategies for a microgrid with multiple distributed generation units[J].IEEE Transactions on Power Systems,2006,21(4):1821-1831. [3] Dimeas A L,Hatziargyriou N D.Operation of a multiagent system for microgrid control[J].IEEE Transactions on Power Systems,2005,20(3):1447-1455. [4] Kakigano H,Miura Y,Ise T.Configuration and control of a DC microgrid for residential houses[C].Transmission & Distribution Conference & Exposition:Asia and Pacific,Seoul,2009:1-4. [5] Xu L,Chen D.Control and operation of a DC microgrid with variable generation and energy storage[J].IEEE Transactions on Power Delivery,2011,26(4):2513-2522. [6] 吴卫民,何远彬,耿攀,等.直流微网研究中的关键技术[J].电工技术学报,2012,27(1):98-106. Wu Weimin,He Yuanbin,Geng Pan,et al.Key Technologies for DC Micro-Grids[J].Transactions of China Electrotechnical Society,2012,27(1):98-106. [7] Jayawardena A V,Meegahapola L G,Perera S,et al.Dynamic characteristics of a hybrid microgrid with inverter and non-inverter interfaced renewable energy sources:A case study[C].2012 IEEE International Conference on Power System Technology (POWERCON),Auckland,2012:1-6. [8] Akbari M,Golkar M A,Tafreshi S M M.A PSO solution for improved voltage stability of a hybrid ac-dc microgrid[C].2011 IEEE PES Innovative Smart Grid Technologies-India,Kollam,Kerala,2011:352-357. [9] Liu Y,Zhang D H,Sun D D.Performance analysis of a solid state transformer for smart grid[J].Applied Mechanics and Materials,2014,441:174-177. [10]张明锐,刘金辉,金鑫.应用于智能微网的SVPWM固态变压器研究[J].电工技术学报,2012,27(1):90-97. Zhang Mingrui,Liu Jinhui,Jin Xin.Research on the SVPWM solid state transformer applied in smart micro-grid[J].Transactions of China Electrotechnical Society,2012,27(1):90-97. [11]刘海波,毛承雄,陆继明,等.电子电力变压器储能系统及其最优控制[J].电工技术学报,2010,25(3):54-60. Liu Haibo,Mao Chengxiong,Lu Jiming,et al.Energy storage system of electronic power transformer and its optimal control[J].Transactions of China Electrotechnical Society,2010,25(3):54-60. [12]王旭斌,李鹏,窦鹏冲,等.用于微网孤岛运行的新型功率控制方法[J].电力自动化设备,2014,34(6):122-128. Wang Xubin,Li Peng,Dou Pengchong,et al.Power control method for autonomous microgrid[J].Electric Power Automation Equipment,2014,34(6):122-128. [13]Loh P C,Li Ding,Chai Yikang.Autonomous operation of hybrid microgrid with AC and DC subgrids[J].IEEE Transactions on Power Electronics,2012,28(5):2214-2223. [14]Jiang Z,Yu X.Power electronics interfaces for hybrid DC and AC-linked microgrids[C].IEEE 6th International Power Electronics and Motion Control Conference,Wuhan,2009:730-736. |
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