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Study, modelling and control of a single-phase power factor corrector based on the Sheppard-Taylor topology

机译:基于Sheppard-Taylor拓扑的单相功率因数校正的研究,建模和控制

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摘要

In this paper, a single-phase power factor corrector (PFC) based on the Sheppard-Taylor topology is studied. A novel mathematical representation of the converter is elaborated using the state-space averaging technique. In order to emphasise the usefulness of such model, three pulse-width-modulated (PWM) multi-loops control schemes are proposed and developed in the aim of ensuring a unity power factor at the AC-source side and a regulated voltage at the DC-load side. The first one uses the simple and robust hysteretic-based controller; the second one employs a conventional PI regulator; whereas the third one is based on the model nonlinearity compensation approach. The control systems are tested through simulations under both rated and disturbed operating conditions. The system performance is evaluated in terms of source current total harmonic distortion (THD), input power factor, DC voltage stabilisation, and regulation following load variations.
机译:本文研究了基于Sheppard-Taylor拓扑的单相功率因数校正器(PFC)。使用状态空间平均技术对转换器进行了新颖的数学表示。为了强调这种模型的实用性,提出并开发了三种脉宽调制(PWM)多回路控制方案,目的是确保交流电源侧的功率因数统一,直流电压稳定。负载侧。第一个使用简单且健壮的基于滞后的控制器;第二个采用传统的PI调节器;而第三个则基于模型非线性补偿方法。控制系统通过模拟在额定和受干扰的运行条件下进行测试。根据电源电流总谐波失真(THD),输入功率因数,DC电压稳定度以及负载变化后的调节来评估系统性能。

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