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Performance Evaluation of Fuzzy and PI Controller for Boost Converter with Active PFC

机译:有源PFC的Boost变换器模糊PI控制器的性能评估。

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In this paper, the problem of controlling AC-DC full bridge converter is considered. The control objectives are two, one is guaranteeing a regulated voltage for the connected load and second one is enforcing power factor correction (PFC) with input current sinusoidal. Power factor correction of Boost converter is done by using fuzzy control technique. The inner loop has a current error amplifier which improves the power factor by properly shaping the input current in accordance with its reference. This reference signal is always synchronized and proportional to the line voltage hence the input current comes in phase with the input voltage. Thus by improving the power factor maximum active power can be delivered to the load. The voltage loop is being controlled by the fuzzy controller and the multiplier. Voltage regulation is done by the fuzzy controller and input distortion is minimized by the fuzzy controller. The desired features of an active PFC technique are close to Unity Power Factor operation, less than 10 % total harmonic distortion in line current and simple control strategy. The fuzzy control technique gives better performance during different line voltage and load. The results are verified through MATLAB/Simulink.
机译:本文考虑了控制AC-DC全桥转换器的问题。控制目标有两个,一个是保证所连接负载的电压稳定,第二个是使用输入电流正弦波来强制执行功率因数校正(PFC)。 Boost变换器的功率因数校正采用模糊控制技术。内部环路具有一个电流误差放大器,该电流误差放大器通过根据其基准适当调整输入电流来提高功率因数。该参考信号始终是同步的,并且与线电压成比例,因此输入电流与输入电压同相。因此,通过提高功率因数,可以将最大有功功率传递给负载。电压回路由模糊控制器和乘法器控制。电压调节由模糊控制器完成,输入失真由模糊控制器最小化。有源PFC技术的理想功能接近于Unity Power Factor操作,线路电流的总谐波失真小于10%,并且控制策略简单。模糊控制技术可在不同的线路电压和负载下提供更好的性能。通过MATLAB / Simulink验证了结果。

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