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-  2017 

一种新型大功率升降压变换器及控制方法
A novel high-power step-up/step-down converter and control methods

DOI: 10.13700/j.bh.1001-5965.2016.0225

Keywords: 大功率,升降压变换器,小信号模型,控制,过渡
high-power
,step-up/step-down converter,small-signal model,control,transition

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Abstract:

摘要 现有的升降压拓扑中双管级联变换器最符合高效大功率场合的使用要求,但如果工作模式标准选择不当,串联结构和Boost电路的非线性直流增益很容易在升降压转换过程中产生严重的振荡。本文提出了一种新颖的大功率IPOSBHB变换器,阐述了其电路结构及基本关系,建立了降压模式和升压模式下的开环小信号模型,设计了载波平移的组合控制方法,分析了升降压模式切换时传递函数的不一致性、占空比的不连续性和输入电压的扰动对变换器输出特性的影响,并给出了补偿措施。本文提出的载波平移组合控制策略和补偿方法很容易实现稳态时的高效控制和升降压模式切换时的平滑过渡,同时降低了输入电压扰动的不利影响。通过一台15kW样机对本文提出的理论加以验证。
Abstract:Two-switch cascade converter is the most appropriate solution for efficient high-power applications among the existing converter topologies. However, the cascade structure and the nonlinear dc gain of Boost circuit are more likely to cause severe oscillations if the criterion for the selection of the operation mode is chosen improperly during step-up/step-down transition. A novel high-power IPOSBHB converter was proposed. The circuit structure and basic relations were analyzed. And the open-loop small-signal model of Buck mode and Boost mode was established. The carrier wave parallel-shifting combinational control method was designed. The inconformity of the transfer functions, the discontinuity caused by duty cycle and the disturbance of input voltage were analyzed and the methods for compensation were also proposed. The carrier wave parallel-shifting combinational control strategy and the compensation methods proposed were easy to be carried out to achieve effective control at steady state and achieve smooth transition at step-up/step-down mode change, and also reduce the adverse effect caused by the disturbance of input voltage. A 15 kW prototype is used to validate the proposed theory.

References

[1]  SAHU B,RINCON-MORA G A.A low voltage,dynamic,noninverting,synchronous buck-boost converter for portable applications[J].IEEE Transactions on Power Electronics,2004,19(2):443-452.
[2]  CHAKRABORTY A,KHALIGH A,EMADI A.Combination of buck and boost modes to minimize transients in the output of a positive buck-boost converter[C]//IECON 2006-32nd Annual Conference on IEEE Industrial Electronics.Piscataway,NJ:IEEE Press,2006:4075-4080.
[3]  任小永,阮新波,李明秋,等.双沿调制的四开关Buck-Boost变换器[J].中国电机工程学报,2009,29(12):16-23.REN X Y,RUAN X B,LI M Q,et al.Dual edge modulated four-switch Buck-Boost converter[J].Proceedings of the CSEE,2009,29(12):16-23(in Chinese).
[4]  任小永,唐钊,阮新波,等.一种新颖的四开关Buck-Boost变换器[J].中国电机工程学报,2008,28(21):15-19.REN X Y,TANG Z,RUAN X B,et al.A novel four switch Buck-Boost converter[J].Proceedings of the CSEE,2008,28(21):15-19(in Chinese).
[5]  罗明玲.微小卫星电源系统MPPT模块的设计与实现[D].杭州:浙江大学,2014.LUO M L.Design and implement on MPPT module of micro-satellite power system[D].Hangzhou:Zhejiang University,2014(in Chinese).
[6]  FERNANDEZ RANDYLL R M JR.A novel photovoltaic power converter for military and space applications[D].Monterey:Naval Postgraduate School,2015.
[7]  QIAO H B,ZHANG Y C,YAO Y T,et al.Analysis of Buck-Boost converters for fuel cell electric vehicles[C]//ICVES 2006.Piscataway,NJ:IEEE Press,2006:109-113.
[8]  肖华锋,谢少军.用于光伏并网的交错型双管Buck-Boost变换器[J].中国电机工程学报,2010,30(21):7-12.XIAO H F,XIE S J.An interleaving double-switch Buck-Boost converter for PV grid-connected inverter[J].Proceedings of the CSEE,2010,30(21):7-12(in Chinese).
[9]  NAKANISHI F,IKEGAMI T,EBIHARA K,et al.Modeling and operation of a 10 kW photovoltaic power generator using equivalent electric circuit method[C]//Photovoltaic Specialists Conference.Piscataway,NJ:IEEE Press,2000:1703-1706.
[10]  ZUE A O,CHANDRA A.Simulation and stability analysis of a 100 kW grid connected LCL photovoltaic inverter for industry[C]//Power Engineering Society General Meeting.Piscataway,NJ:IEEE Press,2006:1-6.
[11]  LEE Y J,KHALIGH A,EMADI A.A compensation technique for smooth transitions in non-inverting Buck-Boost converter[C]//IEEE Applied Power Electronics Conference & Exposition.Piscataway,NJ:IEEE Press,2009:608-614.
[12]  CHOMSUWAN K,PRISUWANNA P,MONYAKUL V.Photovoltaic grid-connected inverter using two-switch Buck-Boost converter[C]//Photovoltaic Specialists Conference.Piscataway,NJ:IEEE Press,2002:1527-1530.
[13]  GABORIAULT M,NOTMAN A.A high efficiency,non-inverting,Buck-Boost DC-DC converter[C]//Proceedings of 19th Annual IEEE Applied Power Electronics Conference and Exposition.Piscataway,NJ:IEEE Press,2004:1411-1415.
[14]  LEE Y J,KHALIGH A,CHAKRABORTY A,et al.Digital combination of Buck and Boost converters to control a positive Buck-Boost converter and improve the output transients[J].IEEE Transactions on Power Electronics,2009,24(5-6):1267-1279.
[15]  YAO C,RUAN X B,CAO W,et al.A two-mode control scheme with input voltage feed-forward for the two-switch Buck-Boost DC-DC converter[J].IEEE Transactions on Power Electronics,2014,29(4):2037-2048.
[16]  杜青,齐铂金,张涛,等.一种新型大功率输入并联输出串联Buck半桥变换器[J].中国电机工程学报,2012,32(6):47-55.DU Q,QI B J,ZHANG T,et al.A novel high-power input-parallel output-series Buck-halfbridge converter[J].Proceedings of the CSEE,2012,32(6):47-55(in Chinese).
[17]  FENG W,QI B J,WANG Y P,et al.High power DC-DC converter for renewable energy power system[C]//2014 IEEE Conference and Exposition on Transportation Electrification Asia-Pacific (ITEC Asia-Pacific).Piscataway,NJ:IEEE Press,2014:1-4.

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