首页> 外文会议>2012 10th IEEE/IAS International Conference on Industry Applications. >DC electronic load based on an interleaved chopper converter to determine photovoltaic panel and fuel cell biasing curves
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DC electronic load based on an interleaved chopper converter to determine photovoltaic panel and fuel cell biasing curves

机译:基于交错斩波转换器的直流电子负载,以确定光伏电池板和燃料电池的偏置曲线

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This paper presents the description of a DC electronic load based on an interleaved chopper converter to determine the biasing and dynamics characteristics of either fuel cells (FCs) and photovoltaic panels (PVs). Variable loads are used for experimental data acquisition of I–V power supply characteristics in a way that several operating points can be easily obtained. Laboratory load current tests using ordinary power resistors are not an easy solution due to their size, cost and overall weight. To resolve that it is proposed in this paper that the current through electronically varying loads can give better resolution to the I–V characteristics of FC and PV sources. The interleaved operation of the chopper converter ensures an input high frequency current ripple, reducing so the input LC filters size and converter volume. The converter transfer function is analyzed and controllers are designed to obtain a fast dynamic response and insure good stability in steady state operation. It is presented the converter operating principles, operating states and design. The simulated and results are compared to each other in order to prove the electronic load effectiveness in acquiring the I–V biasing curves of fuel cells and photovoltaic panels.
机译:本文介绍了一种基于交错式斩波转换器的直流电子负载的描述,以确定燃料电池(FC)和光伏面板(PV)的偏置和动态特性。可变负载用于I-V电源特性的实验数据采集,从而可以轻松获得多个工作点。由于其尺寸,成本和整体重量,使用普通功率电阻器进行实验室负载电流测试并非易事。为了解决本文提出的问题,通过电子方式改变负载的电流可以更好地解决FC和PV电源的I–V特性。斩波转换器的交错操作可确保输入高频电流纹波,从而减小了输入LC滤波器的尺寸和转换器的体积。分析了转换器的传递函数,并设计了控制器,以实现快速的动态响应并确保稳态工作时具有良好的稳定性。介绍了变频器的工作原理,工作状态和设计。将仿真结果与结果进行相互比较,以证明电子负载在获取燃料电池和光伏面板的I–V偏置曲线时的有效性。

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