基于交錯并聯(lián)拓撲的微型光伏儲能變換器
發(fā)布時間:2018-10-26 17:24
【摘要】:提出一種基于交錯并聯(lián)四開關Buck-Boost(FSBB)拓撲的微型光伏儲能變換器,該變換器具有輸入電壓范圍寬、電壓紋波小、太陽能電池最大功率利用率高的優(yōu)點,非常適用于單塊太陽能電池最大功率獲取和能量存儲。在此說明了該儲能變換器采用交錯控制策略下的工作原理,分析了變換器的穩(wěn)態(tài)性能,推導出該變換器的輸入電壓紋波表達式,并繪制出其主要工作波形。建立了光伏儲能變換器的小信號模型,分析了系統(tǒng)的穩(wěn)定性,并給出補償網(wǎng)絡的設計方法。最后通過原理樣機驗證了新型拓撲應用的有效性。
[Abstract]:A miniature photovoltaic energy storage converter based on interleaved four-switch Buck-Boost (FSBB) topology is proposed. The converter has the advantages of wide input voltage range, small voltage ripple and high maximum power efficiency of solar cells. Very suitable for single solar cell maximum power acquisition and energy storage. In this paper, the working principle of the energy storage converter under interleaved control strategy is explained, the steady state performance of the converter is analyzed, the expression of the input voltage ripple of the converter is deduced, and the main working waveform is drawn. The small signal model of photovoltaic energy storage converter is established, the stability of the system is analyzed, and the design method of compensation network is given. Finally, the validity of the new topology application is verified by the principle prototype.
【作者單位】: 同濟大學電氣工程系;
【基金】:浙江省科技計劃項目(2013C01063) 中央高校基本科研業(yè)務費專項資金資助項目(0800219170)~~
【分類號】:TM46;TM615
[Abstract]:A miniature photovoltaic energy storage converter based on interleaved four-switch Buck-Boost (FSBB) topology is proposed. The converter has the advantages of wide input voltage range, small voltage ripple and high maximum power efficiency of solar cells. Very suitable for single solar cell maximum power acquisition and energy storage. In this paper, the working principle of the energy storage converter under interleaved control strategy is explained, the steady state performance of the converter is analyzed, the expression of the input voltage ripple of the converter is deduced, and the main working waveform is drawn. The small signal model of photovoltaic energy storage converter is established, the stability of the system is analyzed, and the design method of compensation network is given. Finally, the validity of the new topology application is verified by the principle prototype.
【作者單位】: 同濟大學電氣工程系;
【基金】:浙江省科技計劃項目(2013C01063) 中央高校基本科研業(yè)務費專項資金資助項目(0800219170)~~
【分類號】:TM46;TM615
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