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机构地区:[1]磁浮技术与磁浮列车教育部重点实验室,西南交通大学电气工程学院,成都610031
出 处:《物理学报》2013年第21期404-416,共13页Acta Physica Sinica
基 金:国家自然科学基金(批准号:51177140);中央高校基本科研业务费专项基金(2682013ZT20)资助的课题~~
摘 要:开关变换器的脉冲序列控制是通过调整控制脉冲循环周期内高、低功率脉冲的组合方式实现对开关变换器输出电压的调节.控制脉冲循环周期内高、低功率脉冲的组合方式决定了脉冲序列控制开关变换器的稳态性能.基于数论中连分式展开的思想,研究了控制脉冲循环周期内脉冲序列控制开关变换器的控制脉冲组合规律,得到了确定控制脉冲循环周期内高、低功率控制脉冲组合方式的算法.建立了脉冲序列控制开关变换器的输出电压一维离散迭代标准模型,并结合高、低功率控制脉冲组合规律,分析了脉冲序列控制开关变换器的稳态性能;研究了其多周期态参数估计和分布;得到了其输出电压纹波范围.仿真和实验结果证明了算法的正确性.本文的研究结果有助于深入理解脉冲序列控制这一类离散型开关变换器控制方法.Pulse train control technique is realized through the output voltage regulation of switching dc-dc converter by adjusting the control pulse combination of high-power and low-power control pulses in a control pulse repetition cycle. Once the circuit parameters are determined, the control pulse combination is fixed. The contro! pulse combination directly affects the steady-state performances of pulse train (PT) controller. In this paper, the control pulse combination of PT control technique is studied by using the continued fraction technique. A one-dimensional normal form of discrete-time map of PT controlled buck converter operating in discontinuous conduction mode is also established in which the steady state performances, such as parameter evaluation of multi-periodicities and output voltage ripple of PT controlled DCM buck converter, are analyzed. The simulation result, experimental result, and the results in the literature are in accordance with the theoretical analysis. This investigation is helpful to obtain a deeper understanding of PT control technique.
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