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The comparison of PI control method and one cycle control method for SEPIC converter

机译:SEPIC变频器的PI控制方法与一周期控制方法的比较

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DC-DC converters, reducing or decreasing the input voltage at the output, are commonly used in many power electronics application. Generally, all types of converter are derived from Buck or Boost converter topology. Similarly, Single-Ended Primary-Inductor Converter (SEPIC) is composed from buck converter topology, but may reduce or decrease the input voltage. In this paper, SEPIC converter is analyzed and two control methods, PI and One Cycle Control (OCC), have been applied to set the output voltage at desired voltage level with 500 W output power and 20 kHz switching frequency. In order to get better result with OCC, the generalized control structure has been changed and different types of OCC method are presented. The simulation results have been obtained by using Simulink/MATLAB and compared with each other. The results include the dynamic response of the suggested control methods with variation of reference, power at output and input voltages. And, the proposed OCC method has better results from the point of load and reference variation. For input voltage variation PI control method is superior.
机译:降低或降低输出端输入电压的DC-DC转换器通常用于许多电力电子应用中。通常,所有类型的转换器都来自降压或升压转换器拓扑。类似地,单端初级电感器转换器(SEPIC)由降压转换器拓扑组成,但可能会降低或降低输入电压。在本文中,对SEPIC转换器进行了分析,并已采用PI和One Cycle Control(OCC)这两种控制方法将输出电压设置为具有500 W输出功率和20 kHz开关频率的所需电压水平。为了获得更好的OCC效果,已经改变了通用控制结构,并提出了不同类型的OCC方法。仿真结果已经通过使用Simulink / MATLAB获得并进行了比较。结果包括所建议的控制方法的动态响应,其中包括参考值,输出和输入电压下的功率的变化。并且,从负载和参考偏差的角度出发,所提出的OCC方法具有更好的结果。对于输入电压变化,PI控制方法是优越的。

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