首页> 外文会议>2017 European Conference on Electrical Engineering and Computer Science >Differential Flatness-Based Control of Current/Voltage Stabilization for a Single-Phase PFC with Multiphase Interleaved Boost Converters
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Differential Flatness-Based Control of Current/Voltage Stabilization for a Single-Phase PFC with Multiphase Interleaved Boost Converters

机译:具有多相交错式Boost转换器的单相PFC基于电流或电压稳定度的基于差分平坦度的控制

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摘要

This paper presents an original control law for a single-phase PFC with multiphase interleaved boost converter for high power applications. This kind of system is a nonlinear behavior. Classically, to control the current and voltage in the converter, a linearized technique is often used to study the stability and to select the controller parameters of the nonlinear converter. In this paper, a nonlinear-control algorithm based on the diffential flatness approach is proposed. Utilizing the flatness theory, we propose simple solutions to the system performance and stabilization problems. To authenticate the proposed method, a prototype single-phase PFC with two-boost converters (1-kW, 360-Vdc is realized in the renewable energy research centre. The proposed control law is implemented by digital estimation in a dSPACE 1104 controller card. Experimental results in the laboratory validate the exceptional control structure.
机译:本文提出了适用于大功率应用的单相PFC和多相交错式升压转换器的原始控制律。这种系统是非线性行为。传统上,为了控制转换器中的电流和电压,通常使用线性化技术来研究稳定性并选择非线性转换器的控制器参数。提出了一种基于差分平坦度方法的非线性控制算法。利用平坦度理论,我们为系统性能和稳定性问题提出了简单的解决方案。为了验证该方法的有效性,可再生能源研究中心实现了带有两个升压转换器(1-kW,360-Vdc)的单相PFC原型,并通过dSPACE 1104控制器卡中的数字估计实现了所建议的控制律。实验室中的实验结果验证了出色的控制结构。

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