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作 者:程为彬[1] 康思民[1] 汪跃龙[1] 汤楠[1] 郭颖娜[1] 霍爱清[1]
出 处:《物理学报》2011年第2期97-104,共8页Acta Physica Sinica
基 金:国家高技术研究发展计划(批准号:2003AA602013);陕西省自然科学基础研究计划(批准号:SJ08E216);陕西省教育厅科研专项基金(批准号:08JK410;09JK687)资助的课题~~
摘 要:以动态调整过程中的动态特征系数积和动态镇定能力为基础,研究连续峰值电流模式功率因数校正(PFC)Boost变换器中的快时标不稳定及其不对称混沌现象的形成机理.基于提高功率因数和降低谐波失真的要求,提出输入电流正弦化的补偿思路,应用参数共振优化补偿策略,推导优化补偿的表达式,采用最强参数共振进行全局优化.数值仿真表明这种全局优化补偿策略具有最强的动态镇定能力,保证每个频闪周期内的快速稳定,控制了快时标不稳定混沌现象,获得理想的补偿效果和单位功率因数,可提高变换器的转换效率.Based on the multiplication of dynamic eigenvalue coefficient and its dynamic stabilizing capability,fast-scale instability and its asymmetry in power factor correction (PFC) Boost converter with continuous peak current control mode are investigated. To realize higher power factor and less harmonic distortion,a kind of compensation strategy is proposed to make the input current a sinusoidal wave,and it is optimized with parameter resonance. The formulas are deduced,and the overall optimization is carried out. The results of digital simulation shows that the overall compensating strategy has the most powerful dynamic ability to ensure the quick stabilization during every stroboscopic period,and the fast-scale instability is controlled,and the approximate unit power factor and the best compensating effects are obtained finally, resulting in the increase of the conversion efficiency of PFC Boost converter.
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