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Proposal for faster disturbance rejection of boost DC-DC converter based on simplified current minor loop

机译:基于简化电流小环路的升压DC-DC转换器更快的抗干扰性建议

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Boost converters contain a right half plane (RHP) zero. This RHP has severe limitations on the bandwidth of controllers. Further, this RHP makes it difficult to design fast disturbance rejection approaches, such as disturbance observers (DOB). This paper tackles the problem of designing a DOB based control law of the boost converter. This is done by designing a dual loop feedback controller. The designed controller is called current-minor-loop (CML) control. With CML, it is possible to make a fast response of inductor current to track reference current. Following that, the CML can be reformulated such that the current loop is considered unity. Further, the CML is simplified to make the boost converter minimum phase (MP) system. The formulated control approach is validated by simulations using PSIM software. Then, this method is verified by experiments on a boost converter loaded with resistive load.
机译:升压转换器包含一个右半平面(RHP)零。该RHP对控制器的带宽有严格的限制。此外,该RHP使得难以设计快速的干扰抑制方法,例如干扰观测器(DOB)。本文解决了基于DOB的升压转换器控制律设计问题。这是通过设计双环路反馈控制器来完成的。设计的控制器称为电流次要环路(CML)控制。使用CML,可以快速响应电感电流,以跟踪参考电流。此后,可以重新构造CML,以使电流回路被认为是统一的。此外,简化了CML以使升压转换器具有最小相位(MP)系统。通过使用PSIM软件进行的仿真验证了制定的控制方法。然后,通过在负载有电阻性负载的升压转换器上进行的实验验证了该方法。

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