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无刷双馈电机能量传递关系和功率因数特性的实验研究 被引量:20
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作者 张爱玲 熊光煜 +2 位作者 刘振富 王建华 周赞强 《中国电机工程学报》 EI CSCD 北大核心 2011年第6期92-97,共6页
在不同的运行方式下,无刷双馈电机控制绕组具有能量双向流动的特点。目前对该课题已有的研究成果中定性分析多、实验数据少,且没有正确反映能量传递关系。提出对应于一定的频率和负载转矩,无刷双馈电机在亚同步电动(或超同步发电)状态... 在不同的运行方式下,无刷双馈电机控制绕组具有能量双向流动的特点。目前对该课题已有的研究成果中定性分析多、实验数据少,且没有正确反映能量传递关系。提出对应于一定的频率和负载转矩,无刷双馈电机在亚同步电动(或超同步发电)状态下控制绕组的能量并非总是回馈到逆变器,而是与其端电压、相应频率下的开路电压以及逆变器的直流侧电压有关。在此基础上,将电机的功率因数、运行效率以及稳定性与能量传递关系结合起来进行研究。样机实验结果表明,双馈运行状态下对应于某一确定的转速和负载,在满足系统稳定运行的条件下,调节控制绕组电压使其约为对应的开路电压,可以提高电机的运行效率。 展开更多
关键词 无刷双馈电机 能量传递 功率因数特性 效率 实验研究
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Characteristics analysis and library development for piezoelectric transformer to drive a ballast for a 35 W class fluorescent lamp using PSPICE modeling
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作者 KIM Young-Choon 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第1期169-180,共12页
PSPICE model driven by an electric equivalent circuit of a piezoelectric circuit is presented. In order to confirm this model to be effective, an independent model of cold cathode fluorescent lamp(CCFL) driving circui... PSPICE model driven by an electric equivalent circuit of a piezoelectric circuit is presented. In order to confirm this model to be effective, an independent model of cold cathode fluorescent lamp(CCFL) driving circuit is used to conduct simulations, leading to a precise modeling. A library is configured through modeling and its accuracy is verified through simulations for widely used and representative lamps such as CCFL, fluorescent lamps, HID lamps, and electrodeless fluorescent lamps. On the basis of experiments, a lamp simulation is also performed using PSPICE, which allows us to take advantage of the lamp library easily. Also, PSPICE model driven by an electric equivalent circuit of a piezoelectric transformer is presented. In order to confirm this model to be effective, an independent model of CCFL driving circuit is used to conduct simulations, leading to a precise modeling. In addition, a new type of electronic ballast is proposed, which allows 35 W-class(T5-class) fluorescent lamp to work. This system is built by a rectifier which has improved power factor and half-bridge series resonant inverter. Also, with size of 27.5 mm high, 27.5 mm wide and 2.5 mm thick, the produced piezoelectric transformer has a high step-up ratio, through which it is possible for the electric ballast circuit to be lighter, smaller and more efficient. After the produced ballast is used to drive the fluorescent lamp for 25 min, it yields 0.95 in power factor correction, 86% in efficiency, 35.07 W in output voltage and 20.5 °C in temperature increase while meeting the characteristics of the 35 W-class fluorescent lamp. 展开更多
关键词 PSPICE 35 W-class cold cathode fluorescent lamp (CCFL) fluorescent lamp LIBRARY
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