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Improving light load power factor for GaN based Totem Pole bridgeless PFC using digital phase locked loop based vector cancellation tracking error compensation

机译:基于锁相环的矢量消除和跟踪误差补偿,改善了基于GaN的图腾柱无桥PFC的轻负载功率因数

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The paper proposes a digital based control method which can be used on power factor correction (PFC) circuit to improve converter power factor (P.F.) at light load conditions. A major contributor to a non-unity P.F. is the need of input capacitor to alleviate differential mode electromagnetic interference (EMI) conducted back to the AC source. At light load, the overall system impedance (EMI filter and PFC circuit) becomes more capacitive which leads to large phase difference between voltage and current and results in a low power factor. A digital phase locked loop base vector cancellation (DPLLVC) technique is proposed in this digest to improve the light load P.F. This technique improves upon the previously proposed Phase Leading Filter Current Compensation (PLFCC) technique as it no longer requires a derivative of the input voltage, which can add noise. In addition to DPLLVC technique, a tracking error compensation scheme is added to further improve the PF under light loads. The scheme is tested and results reported on a 3.3KW Gallium-Nitride (GaN) based Totem Pole bridgeless PFC (TTPL PFC) design. With DPLLVC and tracking error compensation techniques, over 37% P.F. improvement is observed when compared to the results with PLFCC technique at 2% load.
机译:本文提出了一种数字基于数字控制方法,可用于功率因数校正(PFC)电路,在光负荷条件下改善转换器功率因数(P.F.)。一个非团结的主要贡献者p.f.是否需要输入电容来缓解回到AC源的差分模式电磁干扰(EMI)。在轻负载下,整体系统阻抗(EMI滤波器和PFC电路)变得更加电容,导致电压和电流之间的大相位差,并导致低功率因数。在该摘要中提出了一种数字锁相环基础向量取消(DPLLVC)技术,以改善光负荷P.F.该技术改善了先前提出的阶段前导滤波器电流补偿(PLFCC)技术,因为它不再需要输入电压的导数,这可以增加噪声。除了DPLLVC技术之外,还添加了跟踪误差补偿方案,以在轻负载下进一步改善PF。测试该方案并在3.3kw镓 - 氮化物(GaN)图腾柱无线PFC(TTPL PFC)设计上报道了结果。具有DPLLVC和跟踪误差补偿技术,超过37 %P.F.与用PLFCC技术的结果相比,观察到改进2 %负载。

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