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首页> 外文期刊>Mathematics and computers in simulation >Modeling and multi-loop feedback control design of a SEPIC power factor corrector in single-phase rectifiers
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Modeling and multi-loop feedback control design of a SEPIC power factor corrector in single-phase rectifiers

机译:单相整流器中SEPIC功率因数校正的建模和多回路反馈控制设计

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摘要

In this paper, a comparative analysis of three multi-loops control schemes dedicated to the single ended primary inductance converter (SEPIC) power factor corrector (PFC) is presented. The first control technique uses a robust hysteresis current controller; the second control strategy consists of a frequency-domain linear design of regulators on the basis of a small-signal averaged model of the converter, whereas the third control design method uses the input/output feedback linearization approach applied on the large-signal state-space averaged model of the converter. In order to verify and compare the performance of all control schemes, numerical simulations are carried out on a switching-functions-based model of the converter, which is implemented using Matlab/Simulink. The control systems are tested under both rated and disturbed operating conditions. The systems performance is evaluated in terms of source current total harmonic distortion (THD), input power factor, and DC voltage regulation toward load disturbances.
机译:本文对专用于单端初级电感转换器(SEPIC)功率因数校正器(PFC)的三种多回路控制方案进行了比较分析。第一种控制技术使用鲁棒的磁滞电流控制器。第二种控制策略是基于转换器的小信号平均模型,对调节器进行频域线性设计,而第三种控制设计方法则是将输入/输出反馈线性化方法应用于大信号状态。转换器的空间平均模型。为了验证和比较所有控制方案的性能,在基于Matlab / Simulink的转换器的基于开关功能的模型上进行了数值模拟。控制系统在额定和受干扰的运行条件下均经过测试。根据电源电流总谐波失真(THD),输入功率因数和针对负载干扰的DC电压调节来评估系统性能。

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