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Loss-Free Resistor-Based Power Factor Correction Using a Semi-Bridgeless Boost Rectifier in Sliding-Mode Control

机译:使用无桥升压整流器的滑模控制中基于电阻的无损耗功率因数校正

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In this paper, a loss-free resistor based on a semi-bridgeless rectifier is proposed for power factor correction applications. This particular bridgeless rectifier type is composed of two different boost cells which operate complementarily during each half-line cycle. In case of two unbalanced inductors, many control techniques can produce different inductor current ripples during each half-line cycle that can result in the addition of a dc component to the line current. This paper demonstrates that the application of sliding-mode control by means of hysteretic controllers results in a first-order stable system that can mitigate these harmful consequences due to its capability to ensure the symmetry of the line input current waveform for both positive and negative half-line cycles. Thus, the system does not absorb any dc component from the grid and it is also capable of reducing dramatically the amplitude of the third harmonic. The theoretical predictions have been validated by means of PSIM simulations and experimentally on a prototype of 1 kW which has been controlled using only one sliding control surface.
机译:本文提出了一种基于半无桥整流器的无损耗电阻器,用于功率因数校正应用。这种特殊的无桥整流器类型由两个不同的升压单元组成,它们在每个半线周期内互补运行。在使用两个不平衡电感器的情况下,许多控制技术会在每个半线周期内产生不同的电感器电流纹波,这可能会导致在线路电流中增加一个直流分量。本文证明了通过迟滞控制器的滑模控制的应用可产生一阶稳定系统,该系统可以减轻这些有害影响,因为它具有确保正负一半的线路输入电流波形对称的能力。线循环。因此,该系统不会从电网吸收任何直流分量,并且还能够显着降低三次谐波的幅度。理论预测已通过PSIM仿真得到了验证,并在1kW的原型上进行了实验验证,该原型仅使用一个滑动控制面进行了控制。

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