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Stable operating area of photovoltaic cells feeding DC–DC converter in output voltage regulation mode

机译:在输出电压调节模式下为DC-DC转换器供电的光伏电池的稳定工作区域

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摘要

From the perspective of output voltage control stability, this study investigates the stable operating area of photovoltaic (PV) cells feeding the DC–DC converter in output voltage regulation (OVR) mode. In this study, the boost interface converter is taken as an example, and its control system arrangements, small-signal model including the dynamic equivalent circuit of PV cells and the closed-loop transfer functions with different control loop formation are deduced at first. After that, according to the Hurwitz criterion, the essential condition for output voltage control stability is analysed and the relations between control loop formation of the interface converter in OVR mode and the stable operating area are obtained. The validity of the theoretical analysis has been verified by the experiment and simulation results of a 150 W prototype. The investigation shows that: (i) no matter what kind of control loop formation is adopted, the PV cells cannot output the maximum power when the PV interface converter operates in OVR mode; (ii) when the interface converter operates in OVR mode, PV cells can only operate stably in voltage area or current area. Moreover, the type of operating area entirely depends on the converter's output voltage control loop formation.
机译:从输出电压控制稳定性的角度出发,本研究调查了以输出电压调节(OVR)模式向DC-DC转换器供电的光伏(PV)电池的稳定工作区域。本研究以升压接口变换器为例,首先推导了其控制系统配置,包含光伏电池动态等效电路的小信号模型以及具有不同控制回路形式的闭环传递函数。然后,根据Hurwitz准则,分析了输出电压控制稳定性的必要条件,并获得了OVR模式下接口转换器的控制回路形成与稳定工作区域之间的关系。 150 W原型的实验和仿真结果验证了理论分析的有效性。调查表明:(i)无论采用哪种控制回路形式,当PV接口转换器以OVR模式工作时,PV电池都无法输出最大功率; (ii)当接口转换器以OVR模式运行时,PV电池只能在电压区域或电流区域中稳定运行。此外,工作区域的类型完全取决于转换器的输出电压控制回路的形成。

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