现有的关于双向DC/DC变换器的研究大多是分析在continuous current mode(CCM)的工作模式,而双向DC/DC变换器的discontinuous current mode(DCM)的工作模式少有人研究。然而,DCM模式被广泛应用在双向DC/DC变换器中,而且轻载时变换器的效...现有的关于双向DC/DC变换器的研究大多是分析在continuous current mode(CCM)的工作模式,而双向DC/DC变换器的discontinuous current mode(DCM)的工作模式少有人研究。然而,DCM模式被广泛应用在双向DC/DC变换器中,而且轻载时变换器的效率对延长装置的使用寿命至关重要。详细分析了双向DC/DC变换器Buck工作模态的DCM工作模式,此分析方法也可以扩展到N相双向DC/DC变换器。控制脉冲由TMS320F2812产生,闭环控制采用误差动作影响小、增量式与最近采样值无关和进行切换时,冲击较小的增量式PI算法,这样可以使输出电压和电流更加稳定。通过仿真和实验验证了理论分析的正确性。展开更多
In this paper, the design of a proportional integral controller (PIC) plus fuzzy logic controller (FLC) for the negative output elementary super lift Luo converter (NOESLLC) operated in discontinuous conduction mode (...In this paper, the design of a proportional integral controller (PIC) plus fuzzy logic controller (FLC) for the negative output elementary super lift Luo converter (NOESLLC) operated in discontinuous conduction mode (DCM) is presented. In spite of the many benefits viz. the high voltage transfer gain, the high efficiency, and the reduced inductor current and the capacitor voltage ripples, it natured with non-minimum phase. This characteristic makes the control of NOESLLC cumbersome. Any attempt of direct controlling the output voltage may erupt to instability. To overcome this problem, indirect regulation of the output voltage based on the two-loop controller is devised. The savvy in the inductor current control improves the dynamic response of the output voltage. The FLC is designed for the outer (voltage) loop while the inner (current) loop is controlled by the PIC. For the developed ?19.6 V NOESLLC, the dynamic performances for different perturbations (line, load and component variations) are obtained for PIC plus FLC and compared with PIC plus PIC. The study of two cases is performed at various operating regions by developing the MATLAB/Simulink model.展开更多
文摘现有的关于双向DC/DC变换器的研究大多是分析在continuous current mode(CCM)的工作模式,而双向DC/DC变换器的discontinuous current mode(DCM)的工作模式少有人研究。然而,DCM模式被广泛应用在双向DC/DC变换器中,而且轻载时变换器的效率对延长装置的使用寿命至关重要。详细分析了双向DC/DC变换器Buck工作模态的DCM工作模式,此分析方法也可以扩展到N相双向DC/DC变换器。控制脉冲由TMS320F2812产生,闭环控制采用误差动作影响小、增量式与最近采样值无关和进行切换时,冲击较小的增量式PI算法,这样可以使输出电压和电流更加稳定。通过仿真和实验验证了理论分析的正确性。
文摘In this paper, the design of a proportional integral controller (PIC) plus fuzzy logic controller (FLC) for the negative output elementary super lift Luo converter (NOESLLC) operated in discontinuous conduction mode (DCM) is presented. In spite of the many benefits viz. the high voltage transfer gain, the high efficiency, and the reduced inductor current and the capacitor voltage ripples, it natured with non-minimum phase. This characteristic makes the control of NOESLLC cumbersome. Any attempt of direct controlling the output voltage may erupt to instability. To overcome this problem, indirect regulation of the output voltage based on the two-loop controller is devised. The savvy in the inductor current control improves the dynamic response of the output voltage. The FLC is designed for the outer (voltage) loop while the inner (current) loop is controlled by the PIC. For the developed ?19.6 V NOESLLC, the dynamic performances for different perturbations (line, load and component variations) are obtained for PIC plus FLC and compared with PIC plus PIC. The study of two cases is performed at various operating regions by developing the MATLAB/Simulink model.