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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Suppression of Line Frequency Instabilities in PFC AC-DC Power Supplies by Feedback Notch Filtering the Pre-Regulator Output Voltage
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Suppression of Line Frequency Instabilities in PFC AC-DC Power Supplies by Feedback Notch Filtering the Pre-Regulator Output Voltage

机译:通过反馈陷波滤波预调节器输出电压来抑制PFC AC-DC电源中的线路频率不稳定性

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摘要

Due to nonlinear effects, Power Factor Correction (PFC) ac-dc converters working in Continuous Conduction Mode (CCM) can exhibit nonlinear phenomena such as subharmonic oscillations and chaotic regimes at the line frequency. These undesirable behaviors increase the Total Harmonic Distortion (THD) and shift the dc input line current to non null values. This results in a malfunctioning of the system or even damages caused by the increase of the temperature which can jeopardize enormously the performances and shorten the lifetime of the system. In order to avoid these problems, subharmonic line frequency instabilities must be suppressed. In this paper, a selective notch filter based controller is combined with the output voltage compensator to suppress these instabilities and to stabilize a two-stage PFC ac-dc converter. A frequency domain analysis is used to explain the control mechanism of directing subharmonic and chaotic oscillations into stable periodic motion. A detailed study of the effect of this selective filter on the dynamical behavior of the system is presented. A simple harmonic model is used to obtain the control stability domain. This control technique is simple and allows widening the stability domain and improving the performances of the system being its experimental implementation possible using standard devices such as OAs and passive elements. The correctness of the proposed technique is verified with numerical simulations and experimental measurements.
机译:由于非线性效应,在连续导通模式(CCM)下工作的功率因数校正(PFC)交流-直流转换器会表现出非线性现象,例如线路频率下的次谐波振荡和混沌状态。这些不良行为会增加总谐波失真(THD),并使直流输入线电流变为非零值。这导致系统故障或什至由温度升高引起的损坏,这会极大地损害性能并缩短系统的使用寿命。为了避免这些问题,必须抑制次谐波线路频率的不稳定性。在本文中,基于选择性陷波滤波器的控制器与输出电压补偿器相结合,以抑制这些不稳定性并稳定两级PFC ac-dc转换器。频域分析用于解释将次谐波和混沌振荡定向为稳定的周期性运动的控制机制。提出了对该选择性滤波器对系统动力学行为的影响的详细研究。一个简单的谐波模型用于获得控制稳定性域。这种控制技术很简单,可以扩展稳定性域并提高系统性能,这是使用标准设备(例如OAs和无源元件)进行实验实现的可能性。数值模拟和实验测量验证了所提出技术的正确性。

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