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A general three-phase PFC controller for rectifiers with a parallel-connected dual boost topology

机译:具有平行连接的双升压拓扑的整流器的一般三相PFC控制器

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A general constant-frequency power-factor-correction (PFC) controller is proposed for three-phase rectifiers with parallel-connected dual-boost topologies. This paper shows that unity power factor and low current distortion in all three phases can be realized by one-cycle control using one integrator with reset along with a few near and logic components. This new extension of one-cycle control provides the core PFC function to the dual-boost topologies. It does not require multipliers, as used in most other control approaches to scale the current reference according to the output power level. In each 60° of AC line cycle, only two switches are switched at high frequency; therefore the switching losses are significantly reduced. All switches are switched at low current, which results in reduced current ratings. This control method is simple and general. It is applicable to three-phase rectifiers that can be decoupled into parallel-connected dual-boost topologies by slight modification of the logic circuit. This control method is verified by experimental results. The proposed controller is suitable to be integrated into a three-phase PFC control chip.
机译:对于具有平行连接的双升压拓扑的三相整流器,提出了一般恒定频率功率计数器校正(PFC)控制器。本文展示了所有三相中的统一功率因数和低电流失真可以通过使用一个集成器的一个循环控制来实现,其中一个集成电量随着少数近的和逻辑组件。一个全循环控制的新扩展为双升压拓扑提供了核心PFC函数。它不需要乘法器,如在大多数其他控制方法中使用根据输出功率电平来缩放当前参考。在每个60°的交流线循环中,只有两个开关以高频切换;因此,切换损耗显着降低。所有开关在低电流下切换,导致电流降低。这种控制方法简单且一般。它适用于三相整流器,其可以通过轻微修改逻辑电路来分离成并联的双升压拓扑。通过实验结果验证该控制方法。所提出的控制器适用于三相PFC控制芯片。

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