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A new C-dump converter for bifilar winding switched reluctance motor

机译:用于双线绕组开关磁阻电机的新型C-dump转换器

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Single phase switched reluctance machines (SRMs) have a special place in the emerging high-volume, low-cost and low-performance applications in appliances and also in high-speed low-power motor drives in various industrial applications. In designing SRM drive, one should focused on its application, appropriate control and engineering solutions needed to overcome the practical issues. In this paper, a new bifilar drive circuit which uses dump capacitor during discharge period is presented. The new topology utilizes the bifilar winding in conjunction with the dump capacitor to produce resonance in order to provide faster rate of current discharge. This technique permits the motor to operate at higher speeds. A detailed explanation and demonstration of the conventional bifilar converter, as well as the new converter circuit, using simulation by Pspice and laboratory experiment have also been presented. Since Pspice is a circuit oriented package then, the converter and control scheme can be modeled with ease and precision with their proper component ratings for simulation results. Finally, a comparison between the different waveforms of a conventional bifilar converter and the new converter is presented. Experimental results of the proposed SRM drive system obtained from laboratory prototype are also included in order to validate the simulation results.
机译:单相开关磁阻电机(SRM)在新兴的家电大批量,低成本和低性能应用中以及在各种工业应用中的高速低功率电机驱动器中具有特殊的地位。在设计SRM驱动器时,应专注于其应用,克服实际问题所需的适当控制和工程解决方案。本文提出了一种新的双线驱动电路,该电路在放电期间使用倾卸电容器。新的拓扑结构利用双线绕组和卸载电容器来产生谐振,以提供更快的电流放电速率。该技术允许电动机以更高的速度运行。还提供了使用Pspice仿真和实验室实验对常规双线转换器以及新型转换器电路的详细说明和演示。由于Pspice是面向电路的封装,因此可以轻松,精确地对转换器和控制方案进行建模,并为仿真结果提供适当的组件额定值。最后,介绍了传统双线转换器和新转换器的不同波形之间的比较。为了验证仿真结果,还包括从实验室原型获得的拟议SRM驱动系统的实验结果。

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