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A novel maximum power point tracking technique for solar panels using a SEPIC or Cuk converter

机译:使用SEPIC或Cuk转换器的新型太阳能电池板最大功率点跟踪技术

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摘要

A novel technique for efficiently extracting the maximum output power from a solar panel under varying meteorological conditions is presented. The methodology is based on connecting a pulse-width-modulated (PWM) DC/DC SEPIC or Cuk converter between a solar panel and a load or battery bus. The converter operates in discontinuous capacitor voltage mode whilst its input current is continuous. By modulating a small-signal sinusoidal perturbation into the duty cycle of the main switch and comparing the maximum variation in the input voltage and the voltage stress of the main switch, the maximum power point (MPP) of the panel can be located. The nominal duty cycle of the main switch in the converter is adjusted to a value, so that the input resistance of the converter is equal to the equivalent output resistance of the solar panel at the MPP. This approach ensures maximum power transfer under all conditions without using microprocessors for calculation. Detailed mathematical derivations of the MPP tracking technique are included. The tracking capability of the proposed technique has been verified experimentally with a 10-W solar panel at different insolation (incident solar radiation) levels and under large-signal insolation level changes.
机译:提出了一种在变化的气象条件下有效地从太阳能电池板中提取最大输出功率的新技术。该方法基于在太阳能电池板与负载或电池总线之间连接脉宽调制(PWM)DC / DC SEPIC或Cuk转换器。转换器在不连续的电容器电压模式下工作,而其输入电流是连续的。通过将小信号正弦扰动调制到主开关的占空比中,并比较输入电压的最大变化和主开关的电压应力,可以确定面板的最大功率点(MPP)。将转换器中主开关的标称占空比调整为一个值,以使转换器的输入电阻等于MPP处太阳能电池板的等效输出电阻。这种方法无需使用微处理器进行计算即可确保在所有条件下的最大功率传输。包括了MPP跟踪技术的详细数学推导。在不同日照(入射太阳辐射)水平和大信号日照水平变化的情况下,使用10 W太阳能电池板已通过实验验证了该技术的跟踪能力。

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