A Novel Diode Rectifier with a Series Connected Chopper for Reduced Input Current THD

IF 1.5 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Iranian Journal of Science and Technology-Transactions of Electrical Engineering Pub Date : 2024-01-07 DOI:10.1007/s40998-023-00689-4
Tanveer Abbas, Noman Khan, Muhammad Sarmad Afzal
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Abstract

Rectifiers are generally categorized as passive and active rectifiers. Compared to the active rectifiers (e.g. pulse width modulated (PWM) rectifiers), passive rectifiers (i.e., diode rectifiers) result in higher total harmonic distortion (THD) in the input current. However, passive rectifiers are simpler than the active rectifiers in their hardware and control structure. Therefore, passive rectifiers are still considered with different THD minimization schemes. In industry, three-phase diode rectifiers are used in 6-pulse, 12-pulse, 18-pulse, and 24-pulse configurations with THD values of 30%, 15%, 10%, and 6%, respectively. Single-phase diode rectifiers result in a higher THD of 48%. Minimization of THD for single-phase rectifiers is a conspicuous need for increasing DC appliances for domestic use. This paper proposes a novel rectifier using a conventional diode bridge followed by a series chopper. A controlled conduction angle of the chopper significantly reduces the THD from 48 to 28%. The THD is further reduced to 16.4% on the primary side of the distribution transformer after the elimination of triple-n harmonics in a balanced configuration. The proposed topology uses a single switch operating at the line frequency making the circuit and control much simpler than a PWM rectifier, and the dynamic power loss is also low. So, the proposed topology is better suited for single-phase applications requiring circuit and control simpler than a PWM rectifier, and THD much lower than a conventional diode bridge rectifier. A comprehensive analytical analysis, circuit simulations, power loss analysis, and experimental results are presented for the proposed topology to validate its working and evaluate its performance.

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带串联斩波器的新型二极管整流器,可降低输入电流 THD
整流器一般分为无源整流器和有源整流器。与有源整流器(如脉宽调制(PWM)整流器)相比,无源整流器(即二极管整流器)的输入电流总谐波失真(THD)较高。不过,无源整流器在硬件和控制结构上比有源整流器简单。因此,无源整流器仍采用不同的 THD 最小化方案。在工业中,三相二极管整流器采用 6 脉冲、12 脉冲、18 脉冲和 24 脉冲配置,THD 值分别为 30%、15%、10% 和 6%。单相二极管整流器的总谐波失真较高,为 48%。最大限度地降低单相整流器的总谐波失真(THD)是日益增多的家用直流电器的显著需求。本文提出了一种新型整流器,使用传统二极管桥接串联斩波器。通过控制斩波器的导通角,可将总谐波失真(THD)从 48% 显著降至 28%。在平衡配置中消除三n 次谐波后,配电变压器一次侧的总谐波失真进一步降低到 16.4%。拟议的拓扑结构使用单个开关,工作在线路频率上,因此电路和控制比 PWM 整流器简单得多,动态功率损耗也较低。因此,所提出的拓扑结构更适用于要求电路和控制比 PWM 整流器更简单、总谐波失真(THD)比传统二极管桥式整流器更低的单相应用。本文介绍了拟议拓扑结构的综合分析、电路仿真、功率损耗分析和实验结果,以验证其工作原理并评估其性能。
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来源期刊
CiteScore
5.50
自引率
4.20%
发文量
93
审稿时长
>12 weeks
期刊介绍: Transactions of Electrical Engineering is to foster the growth of scientific research in all branches of electrical engineering and its related grounds and to provide a medium by means of which the fruits of these researches may be brought to the attentionof the world’s scientific communities. The journal has the focus on the frontier topics in the theoretical, mathematical, numerical, experimental and scientific developments in electrical engineering as well as applications of established techniques to new domains in various electical engineering disciplines such as: Bio electric, Bio mechanics, Bio instrument, Microwaves, Wave Propagation, Communication Theory, Channel Estimation, radar & sonar system, Signal Processing, image processing, Artificial Neural Networks, Data Mining and Machine Learning, Fuzzy Logic and Systems, Fuzzy Control, Optimal & Robust ControlNavigation & Estimation Theory, Power Electronics & Drives, Power Generation & Management The editors will welcome papers from all professors and researchers from universities, research centers, organizations, companies and industries from all over the world in the hope that this will advance the scientific standards of the journal and provide a channel of communication between Iranian Scholars and their colleague in other parts of the world.
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