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单相电机气隙磁势波与电流时间波的时空关系(一)
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作者 杨臣敏 《电机电器技术》 1995年第1期11-16,共6页
采用理想正弦绕组作为分析基础,对电机空间的磁势与电流波进行分解与叠加,以解析椭圆形磁场、相电流与正逆序电流以及等值电路等相互之间的时空关系。
关键词 电机 气隙磁势 电流时间波
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单相电机气隙磁势波与电流时间波的时空关系(二)
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作者 杨臣敏 《电机电器技术》 1995年第2期7-13,共7页
单相电机气隙磁势波与电流时间波的时空关系(二)杨臣敏五、总磁势波形作椭园形旋转的规律由于与这两个合成圆形正反向行波的转向不同,故它们只能在某一瞬间所对应的空间处,才能进行向量合成;而在下一个瞬时,它们的相对位置已经发... 单相电机气隙磁势波与电流时间波的时空关系(二)杨臣敏五、总磁势波形作椭园形旋转的规律由于与这两个合成圆形正反向行波的转向不同,故它们只能在某一瞬间所对应的空间处,才能进行向量合成;而在下一个瞬时,它们的相对位置已经发生了新的变化,故其合成必须进行另一... 展开更多
关键词 单相电机 气隙磁势 电流时间波
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Constant Ripple Current Control for Switching DC-DC Converter
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作者 Gwo-Tarng Chern Jenn-Jong Shieh 《Journal of Energy and Power Engineering》 2012年第9期1437-1441,共5页
The adapted DC-DC converters should be smaller in size and have a small output current ripple to meet the increasing demand for low voltages with high performance and high density micro processors for several microele... The adapted DC-DC converters should be smaller in size and have a small output current ripple to meet the increasing demand for low voltages with high performance and high density micro processors for several microelectronic load applications. This paper proposes a DC-DC converter using variable on-time and variable switching frequency control enhanced constant ripple current control and reduced magnetic components. The proposed converter is realized by making the turn-offtime proportional to the on-time of the converter, according to the input and output voltage, thereby reducing the corresponding current ripple on output voltage in the continuous conduction mode. A Buck DC-DC converter using the proposed control strategy is analyzed in detail, along with some experimental results to show the performance and effectiveness of this converter. 展开更多
关键词 Constant ripple current DC-DC converter variable switching frequency continuous conduction mode indirect currentsensor magnetic component.
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On-Line Adaptive Repetitive Controller for Power Factor Correction Systems
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作者 鞠嘉凌 刘斌 +2 位作者 李俊 胡质良 万海燕 《Journal of Shanghai Jiaotong university(Science)》 EI 2016年第3期263-269,共7页
When the fundamental frequency is shifting, it is hard for traditional repetitive controller to work at the resonant frequencies. In this paper, a novel adaptive repetitive controller for power factor correction syste... When the fundamental frequency is shifting, it is hard for traditional repetitive controller to work at the resonant frequencies. In this paper, a novel adaptive repetitive controller for power factor correction systems is proposed to suppress the current harmonics. Through the controller, the shifting sampling times of the repetitive controller in a fundamental period can be obtained. Mathematical analysis, simulations and physical experiments have validated the effectiveness of the adaptive repetitive controller. 展开更多
关键词 frequency shifting harmonics adaptive repetitive controller
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