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Mixed-signal control of single-phase PFC based on a nonlinear current control method

机译:基于非线性电流控制方法的单相PFC混合信号控制

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摘要

Mixed-signal control of single-phase power factor corrected (PFC) ac-dc converters based on a new nonlinear current control method is presented. The proposed nonlinear current control combines input current feedforward with cycle-by-cycle integral control of the switch current to achieve sinusoidal input current and unity input power factor. Stability of the proposed nonlinear current control method is analyzed, and different improvement methods are presented. The resulting control performance is superior to all existing PFC control methods and can meet the requirements of various applications, including high-frequency (360–800 Hz) airborne power systems. The proposed mixed-signal implementation scheme uses an analog current controller that is simple, insensitive to noise, and independent of converter and control design parameters. A digital controller regulates the output voltage by providing a low-frequency reference to the analog current loop. A sampling rate much lower than the switching frequency can be used, thereby enabling the use of a low-speed digital control device while achieving all the benefits of digital control. A prototype design is presented to validate the theory and to demonstrate the performance of the proposed control method.
机译:提出了一种基于新型非线性电流控制方法的单相功率因数校正(PFC)AC-DC转换器的混合信号控制。所提出的非线性电流控制将输入电流前馈与开关电流的逐周期积分控制相结合,以实现正弦输入电流和单位输入功率因数。分析了所提出的非线性电流控制方法的稳定性,并提出了不同的改进方法。由此产生的控制性能优于所有现有的PFC控制方法,并且可以满足包括高频(360–800 Hz)机载电力系统在内的各种应用的要求。提出的混合信号实现方案使用简单,对噪声不敏感且独立于转换器和控制设计参数的模拟电流控制器。数字控制器通过为模拟电流环路提供低频参考来调节输出电压。可以使用远低于开关频率的采样率,从而可以使用低速数字控制设备,同时获得数字控制的所有优势。提出了一个原型设计来验证该理论并证明所提出的控制方法的性能。

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