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基于液流电池储能的光伏发电系统容量配置及成本分析

, PP. 260-268

Keywords: 容量配置,全钒液流电池,铅酸蓄电池,负荷缺电率,成本分析

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Abstract:

根据全钒液流电池的物理特性,以负荷缺电率为指标,结合地区辐照度、环境温度等因素,研究了全钒液流电池应用到独立光伏系统中的容量配置问题,同时从经济性角度对系统运行成本进行了优化和分析。结果表明,全钒液流电池在规模储能方面具有较好的优越性,相对于传统铅酸蓄电池,采用全钒液流电池作为储能单元提高了系统供电可靠性,降低了发电单位运行成本。

References

[1]  Chiang S J, Chang K T, Yen C Y. Residential photovoltaic energy storage system[J]. IEEE Transactions on Industrial Electronics, 1998, 45(3): 385-390.
[2]  Carrasco J M, Franquelo L G, Bialasiewicz J T. Power-electronic systems for the grid integration of renewable energy sources: a survey[J]. IEEE Transactions on Industrial Electronics, 2006, 53(4): 1002-1016.
[3]  Agbossou K, Kolhe M, Hamelin J, et al. Performance of a stand-alone renewable energy system based on energy storage as hydrogen[J]. IEEE Transactions on Energy Conversion, 2004, 19(2): 633-640.
[4]  Barote L, Weissbach R, Teodorescu R. Stand-alone wind system with vanadium Redox battery energy storage[C]. 11th International Conference on Optimization of Electrical and Electronic Equipment, 2008: 407-412.
[5]  Chacra F A, Bastard P, Fleury G, et al. Impact of energy storage costs on economical performance in a distribution substation[J]. IEEE Transactions on Power System, 2005, 20(2): 684-690.
[6]  Singo T A, Martinez A, Saadate S. Using ultracapacitors to optimize energy storage in a photovoltaic system[C]. International Symposium on Power Electronics, Electrical Drives, Automation and Motion, 2008: 229-234.
[7]  Li M H, Funaki T, Hikihara T. A study of output terminal voltage modeling for Redox flow battery based on charge and discharge experiments[C]. Power Conversion Conference-Nagoya, 2007: 221-225.
[8]  Rydh C J. Environmental assessment of vanadium redox and lead-acid batteries for stationary energy storage[J]. Journal of Power Sources, 1999, 80(1-2): 21-29.
[9]  Joerissen L, Garche J, Fabjan Ch, et al. Possible use of vanadium redox-flow batteries for energy storage in small grids and stand-alone photovoltaic systems[J]. Journal of Power Sources, 2004, 127(1-2): 98-104.
[10]  Fabjan Ch, Garche J, Harrer B, et al. The vanadium redox-battery: an efficient storage unit for photovoltaic systems[J]. Electrochemical Acta, 2001, 47(5): 825-831.
[11]  Lone S A, Mufti Mairaj-ud-Din. Integrating a Redox flow battery system with a wind-diesel power system[C]. International Conference on Power Electronics, Drives and Energy Systems, 2006: 1-6.
[12]  Borowy B S, Salameh Z M. Methodology for optimally sizing the combination of a battery bank and PV array in a wind/PV hybrid system[J]. IEEE Transactions on Energy Conversion, 1996, 11(2): 367-375.
[13]  Chahwan J, Abbey C, Joos G, et al. VRB modelling for the study of output terminal voltages, internal losses and performance[C]. IEEE Canada Electrical Power Conference, 2007: 387-392.
[14]  Chacra F A, Bastard P, Fleury G, et al. Energy storage associated to wind farms in a two-tariff structure bidding tender[C]. IEEE Russia Power Tech, 2005: 1-5.

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