提出一种单电感双输出(SIDO)开关变换器的电流型控制技术。以工作于连续导电模式(CCM)的SIDO Boost变换器为例,详细分析电流型控制CCM SIDO Boost变换器的工作原理、工作时序、系统稳定性,得到变换器稳定工作的条件。建立电流型控制CCM ...提出一种单电感双输出(SIDO)开关变换器的电流型控制技术。以工作于连续导电模式(CCM)的SIDO Boost变换器为例,详细分析电流型控制CCM SIDO Boost变换器的工作原理、工作时序、系统稳定性,得到变换器稳定工作的条件。建立电流型控制CCM SIDO Boost变换器的时域仿真模型,通过时域仿真分析变换器的稳态性能、瞬态性能、输出支路的交叉影响以及稳定性。研究结果表明:相比于传统的共模-差模电压型控制,电流型控制CCM SIDO Boost变换器可提高变换器的瞬态响应速度并抑制输出支路间的交叉影响;对于变换器存在的不稳定性问题,可以通过引入适当的斜坡补偿解决。最后通过实验验证了理论分析的正确性。展开更多
The discrete iterative map model of peak current-mode controlled buck converter with constant current load(CCL),containing the output voltage feedback and ramp compensation, is established in this paper. Based on th...The discrete iterative map model of peak current-mode controlled buck converter with constant current load(CCL),containing the output voltage feedback and ramp compensation, is established in this paper. Based on this model the complex dynamics of this converter is investigated by analyzing bifurcation diagrams and the Lyapunov exponent spectrum. The effects of ramp compensation and output voltage feedback on the stability of the converter are investigated. Experimental results verify the simulation and theoretical analysis. The stability boundary and chaos boundary are obtained under the theoretical conditions of period-doubling bifurcation and border collision. It is found that there are four operation regions in the peak current-mode controlled buck converter with CCL due to period-doubling bifurcation and border-collision bifurcation. Research results indicate that ramp compensation can extend the stable operation range and transfer the operating mode, and output voltage feedback can eventually eliminate the coexisting fast-slow scale instability.展开更多
文摘提出一种单电感双输出(SIDO)开关变换器的电流型控制技术。以工作于连续导电模式(CCM)的SIDO Boost变换器为例,详细分析电流型控制CCM SIDO Boost变换器的工作原理、工作时序、系统稳定性,得到变换器稳定工作的条件。建立电流型控制CCM SIDO Boost变换器的时域仿真模型,通过时域仿真分析变换器的稳态性能、瞬态性能、输出支路的交叉影响以及稳定性。研究结果表明:相比于传统的共模-差模电压型控制,电流型控制CCM SIDO Boost变换器可提高变换器的瞬态响应速度并抑制输出支路间的交叉影响;对于变换器存在的不稳定性问题,可以通过引入适当的斜坡补偿解决。最后通过实验验证了理论分析的正确性。
基金Project supported by the National Natural Science Foundation of China(Grant No.61371033)the Fok Ying-Tung Education Foundation for Young Teachers in the Higher Education Institutions of China(Grant No.142027)+1 种基金the Sichuan Provincial Youth Science and Technology Fund,China(Grant Nos.2014JQ0015and 2013JQ0033)the Fundamental Research Funds for the Central Universities,China(Grant No.SWJTU11CX029)
文摘The discrete iterative map model of peak current-mode controlled buck converter with constant current load(CCL),containing the output voltage feedback and ramp compensation, is established in this paper. Based on this model the complex dynamics of this converter is investigated by analyzing bifurcation diagrams and the Lyapunov exponent spectrum. The effects of ramp compensation and output voltage feedback on the stability of the converter are investigated. Experimental results verify the simulation and theoretical analysis. The stability boundary and chaos boundary are obtained under the theoretical conditions of period-doubling bifurcation and border collision. It is found that there are four operation regions in the peak current-mode controlled buck converter with CCL due to period-doubling bifurcation and border-collision bifurcation. Research results indicate that ramp compensation can extend the stable operation range and transfer the operating mode, and output voltage feedback can eventually eliminate the coexisting fast-slow scale instability.