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Verification and simulation of a discrete energy function based nonlinear controller for an AC/DC boost PFC converter

机译:基于离散能量函数的AC / DC升压PFC转换器非线性控制器的验证和仿真

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The conventional two loops PI control system of a Power Factor Correction (PFC) boost converter has a slow dynamic response against load variations due to the fact that the voltage loop must have a very low bandwidth in order to avoid distortions in the input current waveform. To allow the ac/dc boost PFC converter to operate with faster dynamic response and simultaneously maintain near unity input power factor, a new control approach that is based on a novel discrete energy function minimization control law has been proposed. To evaluate the performance of the new control approach, a simulation of a 6.4 kW PFC boost converter was conducted with Simulink and PLECS. Difficulties and potential flaws in control system implementation were discussed. Finally, a new method to synthesize load resistance and reference input current was proposed based on the result of simulation. Results show that the duration of transients can be limited to 2∼3 line cycles and the overshoot/undershoot of the output voltage can be limited to several volts when there is a load change.
机译:功率因数校正(PFC)升压转换器的常规两回路PI控制系统由于负载回路必须具有非常低的带宽以避免输入电流波形的失真这一事实,因此对负载变化具有较慢的动态响应。为了使交流/直流升压PFC转换器能够以更快的动态响应运行并同时保持接近统一的输入功率因数,提出了一种基于新型离散能量函数最小化控制律的新控制方法。为了评估新控制方法的性能,使用Simulink和PLECS对6.4 kW PFC升压转换器进行了仿真。讨论了控制系统实施中的困难和潜在缺陷。最后,基于仿真结果,提出了一种合成负载电阻和参考输入电流的新方法。结果表明,在负载变化时,瞬变的持续时间可以限制为2到3个线周期,输出电压的过冲/下冲可以限制为几伏。

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