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Design and Implementation of Controller for Boost DC-DC Converter Using PI-LPF Based on Small Signal Model

机译:基于小信号模型的PI-LPF Boost DC-DC转换器控制器的设计与实现

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Boost DC-DC converters are used in many renewable energy sources including photovoltaic and fuel cell. They are also used in Uninterrupted Power Supply, inverters, electric vehicles and robots. In this paper a boost converter was built and its controller was developed using proportional integral (PI) action for current loop and low pass filter (LPF) for voltage loop. The controller was derived analytically based on small signal model. Experiment results show that the boost controller functions well in regulating the output voltage under a variation of load. During the start up without any load it can elevate input voltage from 119.6V to output voltage of 241.6V. The developed controller can regulate the output voltage smoothly under load variation from no load to sudden load of 352W. When a large sudden load change happens from 0W to 1042W the output voltage experiences small drop before it is recovered to 241.6V. It can be concluded that the developed control system satisfies the design specification.
机译:Boost DC-DC转换器用于许多可再生能源,包括光伏和燃料电池。它们还用于不间断电源,逆变器,电动汽车和机器人中。在本文中,构建了一个升压转换器,并使用比例积分(PI)作用用于电流环路和低通滤波器(LPF)用于电压环路来开发其控制器。该控制器是基于小信号模型解析得出的。实验结果表明,升压控制器在负载变化时可以很好地调节输出电压。在没有任何负载的情况下启动期间,它可以将输入电压从119.6V升高到241.6V的输出电压。开发的控制器可以在从无负载到352W突然负载的负载变化下平稳地调节输出电压。当负载从0W突然发生大的突然变化到1042W时,输出电压将经历小幅下降,然后恢复到241.6V。可以得出结论,所开发的控制系统满足设计规范。

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