Y. Oren, E. Dahan, A. Shmaryahu, Yishai Kellerman, M. Sitbon, S. Gadelovits, Dmitry Baimel, I. Aharon
{"title":"Modeling and Experimental Validation of Broad Input-Output Range Three-Voltage-Level Rectifier","authors":"Y. Oren, E. Dahan, A. Shmaryahu, Yishai Kellerman, M. Sitbon, S. Gadelovits, Dmitry Baimel, I. Aharon","doi":"10.3390/inventions9020037","DOIUrl":null,"url":null,"abstract":"A new type of single–conversion–step wide–input–range versatile step–up/down three–voltage–level power–factor correction stage is presented in this manuscript. The rectifier can operate both in continuous–conduction mode and discontinuous–conduction mode. First, the rectifier’s principle of operation is described, and then the innovative rectifier is analyzed in continuous and discontinuous–conduction modes. After, an average model for the innovative rectifier is developed. Lastly, the proposed theory is experimentally validated using a multiplier–less dual–control–loop mode at discontinuous–conduction modes. It is shown that although no multiplier is used in the control circuitry, the power factor is near unity. It is revealed that the rectifier can swing the output voltage from 50 V to 900 V while the input voltage is 230 Vrms. Although the rectifier output has a split DC bus with three voltage levels, the required control effort is low, and the output voltage is balanced. The innovative topology suits any standard power–factor correction rectifier application, dual–stage low–voltage power supply, and three–level voltage supplement for low–harmonic inverters. Since the rectifier’s output–voltage swing is extremely wide, energy storage systems and electric vehicle batteries are suitable applications.","PeriodicalId":509629,"journal":{"name":"Inventions","volume":"2 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-03-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Inventions","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3390/inventions9020037","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
A new type of single–conversion–step wide–input–range versatile step–up/down three–voltage–level power–factor correction stage is presented in this manuscript. The rectifier can operate both in continuous–conduction mode and discontinuous–conduction mode. First, the rectifier’s principle of operation is described, and then the innovative rectifier is analyzed in continuous and discontinuous–conduction modes. After, an average model for the innovative rectifier is developed. Lastly, the proposed theory is experimentally validated using a multiplier–less dual–control–loop mode at discontinuous–conduction modes. It is shown that although no multiplier is used in the control circuitry, the power factor is near unity. It is revealed that the rectifier can swing the output voltage from 50 V to 900 V while the input voltage is 230 Vrms. Although the rectifier output has a split DC bus with three voltage levels, the required control effort is low, and the output voltage is balanced. The innovative topology suits any standard power–factor correction rectifier application, dual–stage low–voltage power supply, and three–level voltage supplement for low–harmonic inverters. Since the rectifier’s output–voltage swing is extremely wide, energy storage systems and electric vehicle batteries are suitable applications.
本手稿介绍了一种新型单转换级宽输入范围多功能升压/降压三电平功率因数校正级。该整流器既可在连续导通模式下工作,也可在不连续导通模式下工作。首先介绍了整流器的工作原理,然后分析了创新整流器在连续和非连续导通模式下的工作情况。之后,建立了创新整流器的平均模型。最后,在非连续导通模式下,使用无乘法器双控环模式对提出的理论进行了实验验证。实验表明,虽然控制电路中没有使用乘法器,但功率因数接近于 1。研究表明,整流器的输出电压可在 50 V 至 900 V 之间摆动,而输入电压为 230 Vrms。虽然整流器输出具有三电平的分离式直流母线,但所需的控制能力很低,而且输出电压是平衡的。这种创新的拓扑结构适用于任何标准功率因数校正整流器应用、双级低压电源和低谐波逆变器的三电平电压补充。由于整流器的输出电压摆幅极宽,因此适合应用于储能系统和电动汽车电池。