Effects of the Floating Capacitor Voltage on the Torque-Speed Characteristic of an Open-End Winding Synchronous Reluctance Motor Drive

IF 4.2 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Jacopo Riccio;Filippo Gemma;Luca Rovere;Giulia Tresca;Mauro Di Nardo;Shafiq Odhano;Michele Degano;Pericle Zanchetta
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Abstract

This manuscript investigates the torque-speed characteristics of a synchronous reluctance motor drive with an open-end winding (OEW) configuration. The machine is powered by standard two-level voltage source inverters (VSI), one supplied by a DC power source while the other connected to a floating capacitor (FC). The analysis considers the flux maps of a synchronous reluctance motor identified through experiments to account for the effect of the self-and cross-saturation phenomenon. The study reveals that the dual-inverter (DI) configuration with a FC can significantly extend the constant torque speed range and achieve unity power factor. In addition, the analysis demonstrates that the torque in the constant power speed range can be noticeably increased compared to the standard single-inverter (SI) configuration. With the full model of the OEW drive plant, the FC voltage can be purposefully selected to modify the drive torque speed characteristic to benefit the specific application. The advantages of the investigated synchronous drive architecture have been experimentally validated in different operating conditions with a purposely built set-up.
浮电容电压对开放式绕组同步磁阻电机驱动转矩-转速特性的影响
本文研究了开放式绕组(OEW)配置的同步磁阻电机驱动的转矩-速度特性。该机器由标准的两级电压源逆变器(VSI)供电,一个由直流电源供电,另一个连接到浮动电容器(FC)。分析考虑了同步磁阻电动机的磁通图,以考虑自饱和和交叉饱和现象的影响。研究表明,带FC的双逆变器(DI)配置可以显著延长恒转矩调速范围,实现统一的功率因数。此外,分析表明,与标准的单逆变器(SI)配置相比,在恒功率转速范围内的转矩可以显着增加。有了OEW驱动装置的完整模型,可以有目的地选择FC电压来修改驱动转矩速度特性,从而有利于特定应用。所研究的同步驱动结构的优点已经在不同的工作条件下通过专门建立的装置进行了实验验证。
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来源期刊
IEEE Transactions on Industry Applications
IEEE Transactions on Industry Applications 工程技术-工程:电子与电气
CiteScore
9.90
自引率
9.10%
发文量
747
审稿时长
3.3 months
期刊介绍: The scope of the IEEE Transactions on Industry Applications includes all scope items of the IEEE Industry Applications Society, that is, the advancement of the theory and practice of electrical and electronic engineering in the development, design, manufacture, and application of electrical systems, apparatus, devices, and controls to the processes and equipment of industry and commerce; the promotion of safe, reliable, and economic installations; industry leadership in energy conservation and environmental, health, and safety issues; the creation of voluntary engineering standards and recommended practices; and the professional development of its membership.
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