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Active power factor correction technique for single phase full bridge rectifier

机译:单相全桥整流器的有功功率因数校正技术

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This work addresses the power factor correction technique adopted for a high output power, single phase full bridge rectifier with a large capacitor at its output stage. Full bridge rectifier with a large capacitor at its output stage is the most commonly used circuit topology in AC-DC conversion to get a constant DC output voltage required for various applications. This topology is popular because of its simple construction, low cost and high reliability. However this topology will have a distorted input current waveform shape with lot of lower order harmonics and low power factor which needs to be corrected. The power factor can be improved either by using passive or active components. In this work, a comparative study and analysis of passive and active power factor correction methods has been demonstrated. The simulation of passive power factor correction for a single-phase bridge rectifier with large output capacitor for 1 kW output has been carried out using PSpice simulation software. The active power factor correction for a single-phase, 1 kW output full bridge rectifier has been designed and tested and results are presented. Further the results of both the schemes are compared and advantages of active power factor correction is recorded and demonstrated in this work.
机译:这项工作解决了功率因数校正技术,该技术用于高输出功率的单相全桥整流器,其输出级具有大容量电容器。在输出级带有大容量电容器的全桥整流器是AC-DC转换中最常用的电路拓扑,可以得到各种应用所需的恒定DC输出电压。这种拓扑结构因其结构简单,成本低和可靠性高而广受欢迎。但是,此拓扑将具有失真的输入电流波形,带有许多需要校正的低阶谐波和低功率因数。可以通过使用无源或有源组件来提高功率因数。在这项工作中,已经证明了对无源和有源功率因数校正方法的比较研究和分析。使用PSpice仿真软件已经对具有1 kW输出的大输出电容器的单相桥式整流器进行了无源功率因数校正的仿真。已经设计和测试了单相1 kW输出全桥整流器的有功功率因数校正,并给出了结果。进一步比较了两种方案的结果,并记录了有功功率因数校正的优点并在此工作中进行了演示。

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