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直流微电网周期波动对光伏系统输出功率的影响及其抑制 被引量:3

Effect of DC microgrid periodical ripple on output power of photovoltaic system and its elimination
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摘要 分析了单相交流逆变负载对直流母线电压的影响及波动电压的表达式。进一步分析了直流母线电压波动对直流微电网中光伏发电系统输出功率的影响并推导了光伏电池输出电压、电流及输出功率的表达式,进而揭示出了由于直流母线电压的波动影响造成光伏电池无法持续处于最大功率输出点,间接降低了光伏发电系统的发电效率。提出了基于直流母线电压波动前馈的光伏发电系统电流闭环控制策略,有效抑制了直流母线电压波动对光伏电池输出功率的影响。仿真和实验结果验证了理论分析结果与所提方法的正确性和可行性。 The effect of single-phase DC-AC load on DC-link bus voltage and the expression of DC-link voltage ripple are analyzed.The effect of DC-link voltage ripple on the output power of photovoltaic system in DC microgrid is analyzed and the expressions of photovoltaic cell output voltage,current and power are derived,which reveals that the maximum output power point of photovoltaic cell can hardly kept due to the DC-link voltage ripple and the efficiency of photovoltaic system is indirectly reduced.A strategy of closeloop control based on the feedforward of DC-link voltage ripple is thus proposed to effectively eliminate the effect.Simulative and experimental results validate the accuracy of theoretical analysis and the feasibility of the proposed control strategy.
出处 《电力自动化设备》 EI CSCD 北大核心 2014年第3期34-39,共6页 Electric Power Automation Equipment
基金 国家自然科学基金资助项目(51107018) 高等学校博士学科点专项科研基金(新教师类)资助项目(20102302120013) 黑龙江省博士后科研启动金资助项目(LBH-Q11109)~~
关键词 直流微电网 光伏电池 发电 直流母线电压波动 前馈控制 效率优化 DC microgrid photovoltaic cells electric power generation DC-link voltage ripple feedforward control efficiency improvement
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  • 1李永东,高跃,候轩.多电平变换器——高压大容量电能变换的新技术[J].电力电子技术,2005,39(5):2-6. 被引量:48
  • 2刘树林,刘健,寇蕾,钟久明.Buck DC/DC变换器的输出纹波电压分析及其应用[J].电工技术学报,2007,22(2):91-97. 被引量:56
  • 3LI Wuhua,HE Xiangning. Review of nonisolated high-step-up DC/DC converters in photovohaic grid-connected applications[J]. IEEE Transactions on Power Electronics,2011,58(4) : 1239-1250.
  • 4WANG Xiaolei,YAN Pan,YANG Liang. An engineering design model of multi-cell series-parallel photovoltaic array and MPPT control [C]//Proceedings of the 2010 International Conference on Modelling Identification and Control. Okayama, Japan : [s.n. ], 2010 : 140-144.
  • 5CHANGCHIEN S K,LIANG T J,CHEN J F E,et al. Novel high step-up DC-DC converter for fuel cell energy conversion system [J]. IEEE Transactions on Industrial Electronics,2010,57 (6): 2007-2017.
  • 6HSIEH Y P,CHEN J F E,LIANG T J,et al. A novel high step-up DC-DC converter for a microgrid system[J]. IEEE Tran- sactions on Power Electronics,2011,26(4) :1127-1136.
  • 7YAO Chuan,RUAN Xinbo,WANG Xuehua,et al. Isolated Buck- Boost DC/DC Converters suitable for wide input-voltage range[J]. IEEE Transactions on Power Electronics,2011,26(9): 2599-2613.
  • 8LIANG T J,LEE J H,CHEN S M,et al. Novel isolated high step up DC-DC converter with voltage lift[J]. IEEE Transactions on Power Electronics,2013,60(4) : 1483-1491.
  • 9DU Y,LUK1C S M,JACOBSON B S,et al. Review of high power isolated bi-directional DC-DC converters for PHEV/EV DC charging infrastructure [C ]//IEEE Energy Conversion Congress and Exposition. Phoenix,America: [s.n.] ,2011:553-560.
  • 10IVENSKY G,ELKIN I,BEN Y S. An isolated DC-DC converter using two zero current switched IGBTs in a symmetrical topology[C]//IEEE 25th Annual Conference on Power Electronics. Taipei ,China: [s.n. ], 1994:1218-1225.

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