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Notice of Violation of IEEE Publication Principles: Power Factor Correction in Z-Source Resonant Converter for Wireless Power Transfer Applications

机译:违反IEEE出版物原理的通知:无线电力传输应用Z源谐振转换器中的功率因数校正

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Notice of Violation of IEEE Publication Principles "Power Factor Correction in Z-Source Resonant Converter for Wireless Power Transfer Applications" by D. Venkatesan and S. Radhika in the Proceedings of the 2018 IEEE International Conference on System, Computation, Automation and Networking (ICSCA), July 2018, pp.1-10 After careful and considered review of the content and authorship of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE's Publication Principles. This paper is a duplication of the original text from the paper cited below. The original text was copied without attribution (including appropriate references to the original author(s) and/or paper title) and without permission. Due to the nature of this violation, reasonable effort should be made to remove all past references to this paper, and future references should be made to the following article: "Z-Source Resonant Converter With Power Factor Correction for Wireless Power Transfer Applications" by Nomar S. Gonzalez-Santini, Hulong Zeng, Yaodong Yu, and Fang Zheng Peng in IEEE Transactions on Power Electronics, November 2016, pp.7691-7700
In this paper the Z-source converter is introduced to power factor correction (PFC) applications. The concept is demonstrated through a wireless power transfer (WPT) system for electric vehicle battery charging, namely Z-source resonant converter (ZSRC). Due to the Z-source network (ZSN), the ZSRC inherently performs PFC and regulate the system output voltage simultaneously, without adding extra semiconductor devices and control circuitry to the conventional WPT system such as conventional PFC converters do. In other words, the ZSN can be categorized as a family of the single stage PFC converters. In addition, the ZSN is suitable for high power applications since it is immune to shoot-through states, which increases reliability and adds a boost feature to the system. The ZSRC-based WPT system operating principle is described and analyzed in this paper. Simulations, and experimental results based on a 1-kW prototype with 20-cm air gap between the system primary and secondary side are presented to validate the analysis, and demonstrate the effectiveness of the ZSN in the PFC of the WPT system.
机译:“在Z源谐振转换器功率因数校正的无线电力传输的应用” IEEE出版原则搜索结果违反通知结果由D.卡特桑和S.拉迪卡在2018年IEEE的诉讼结果国际会议系统,计算,自动化和网络(ICSCA),2018年7月,pp.1-10搜索结果后正式组成的专家委员会对本文内容和作者的细心而认真的审查,本文已发现违反IEEE的出版原则。搜索结果本文是从纸张下面引用原文的重复。原文被复制,而不归属(包括原作者(S)和/或论文题目适当参照),未经许可,搜索结果由于这种违规行为的性质,合理应努力消除所有过去本文引用,未来应参考以下文章提出:搜索结果“Z源谐振转换器具有功率因数校正的无线电力传输的应用”点击通过Nomar S.冈萨雷斯 - 桑蒂尼,虎龙曾,姚东玉,和方征蓬在电力电子,2016年11月IEEE交易结果,pp.7691-7700搜索结果
本文中的Z源转换器被引入到电力因数校正(PFC)的应用。概念通过用于电动车辆电池充电,即Z-源谐振转换器(ZSRC)的无线电力传输(WPT)系统证明。由于Z源网络(ZSN),则固有地ZSRC执行PFC和同时调节系统的输出电压,而无需添加额外的半导体器件和控制电路在现有WPT系统如常规PFC转换做。换句话说,该ZSN可以被归类为一个家庭的单级PFC转换器。此外,ZSN是适合于高功率应用,因为它不受直通状态,这增加了可靠性并增加了一个增强功能到系统。基于ZSRC-WPT系统工作原理描述和分析本文。模拟,并基于1千瓦原型与系统初级和次级侧之间的20厘米的空气间隙的实验结果被呈现给验证分析,并显示在系统WPT的PFC的ZSN的有效性。

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