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Power factor correction in switched mode power supply for computers using canonical switching cell converter

机译:使用规范开关单元转换器的计算机的开关模式电源中的功率因数校正

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摘要

This study presents a novel power factor correction (PFC) technique using a canonical switching cell (CSC) converter applicable to multi-output switched mode power supply (SMPS) used in personal computers (PCs). The CSC converter at the front end of this single-phase fed SMPS operates in discontinuous conduction mode that offers inherent PFC for wide range of varying input voltages. It is cascaded to an isolated half-bridge multi output dc-dc converter for obtaining multiple dc voltages that are stiffly regulated and isolated from each other as per the requirement of the PC. The proposed SMPS is designed, modelled and its performance is investigated under steady state and dynamic operating conditions for varying input voltages and loads. It is found that the proposed design is able to offer excellent power factor and low total harmonics distortion at the utility interface as shown in investigations carried on simulation and experimental studies. A comparison of conventional SMPS with proposed PFC-based SMPS vividly brings out the merits of the latter. Further, a comparison is made with other types of front end converters to investigate the relative merits and demerits of the CSC converter over other front end converters.
机译:这项研究提出了一种新颖的功率因数校正(PFC)技术,该技术使用了适用于个人计算机(PC)中使用的多输出开关模式电源(SMPS)的规范开关单元(CSC)转换器。该单相馈电SMPS前端的CSC转换器以不连续导通模式工作,该模式为多种变化的输入电压提供固有的PFC。它级联到一个隔离的半桥多输出DC-DC转换器,以获得多个DC电压,这些电压根据PC的要求经过严格调节并相互隔离。设计,建模了拟议的SMPS,并在稳态和动态工作条件下针对变化的输入电压和负载研究了其性能。结果发现,如在仿真和实验研究中进行的研究所示,所提出的设计能够在公用界面上提供出色的功率因数和较低的总谐波失真。传统SMPS与建议的基于PFC的SMPS的比较生动地展现了后者的优点。此外,与其他类型的前端转换器进行了比较,以研究CSC转换器相对于其他前端转换器的相对优缺点。

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