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1.
与传统的Buck电路相比,基于H桥并联的DC/DC变换器可以实现电压的双极性输出和故障时的冗余控制,非常适合用于大功率电动机正反转控制的场合。分析了并联H桥型DC/DC变换器的结构组成和双脉宽调制(PWM)模式。为了降低双脉宽调制下H桥型DC/DC变换器的开通和关断损耗,对无源软开关技术进行了分析,重点探讨了RCD缓冲电路和最小应力缓冲电路之间的性能差异,指出最小应力软开关技术可以获得更好的软开关性能,并就将其用于双脉宽调制下的并联H桥DC/DC变换器进行了仿真研究。仿真结果表明:最小应力软开关技术用于双脉宽调制下并联H桥DC/DC变换器时,可以实现开关管的零电压开通和零电流关断。  相似文献   

2.
提出了一种高增益Boost变换器电路拓扑,与传统Boost变换器相比,电路工作在占空比D>0.5时实现了3倍的电压增益,均衡了有源开关管电压应力,并使其降低至输出电压的1/3。首先推演了构造两路复合支路高增益三端网络的变换器拓扑;然后分析电路全周期工作原理及电路特性;最后通过搭建1台140 W的试验样机验证了理论的正确性。  相似文献   

3.
单端正激ZVT功率变换器实现   总被引:2,自引:0,他引:2  
高晓光  沈颂华  王均安 《航空学报》1998,19(Z1):116-118
介绍一种单端正激工作方式的零电压过渡(ZVT)软开关DC-DC变换器;描述该变换器的原理和特征;给出了应用ZVT软开关技术和集成控制块SG3525A的24V/9ADC-DC变换器电路和实验结果。  相似文献   

4.
并联交错式有源箝位正激变换器研究   总被引:3,自引:0,他引:3  
深入分析研究了并联交错式有源箝位正激变换器的原理与设计 ,获得了功率开关实现零电压 ZVS开通的条件和关键电路参数选取准则 ,仿真与试验结果均证实了理论分析的正确性。研究结果表明 ,并联交错式有源箝位正激变换器具有优良的电气性能 ,特别适用于大功率分布式电源系统  相似文献   

5.
分析了零电压过渡脉宽调制型(ZVT-PWM)软开关变换器基本工作原理,利用PSPICE软件对升压式ZVT-PWM软开关变换器进行仿真,给出了仿真结果,并与一般的升压变换器进行了比较.仿真结果表明,ZVT-PWM软开关变换技术具有开关损耗小、电源电压和负载适应范围宽、恒频控制和变换效率高等优点.  相似文献   

6.
从电解电源的高频高效化、绿色化、数字化及智能化的发展方向出发,利用电流增强原理,设计了一种开关管带并联辅助网络的零电压全桥软开关电路拓扑,具有节能增效、可靠性高的优点.采用TMS320LF 2407A为核心控制芯片.得到了全桥移相PWM输出波形,并设计了反馈信号调理电路与后端驱动电路,电路形式简单紧凑,实现了软开关电解电源的全数字化控制.  相似文献   

7.
分析了零电压过渡脉宽调制型(ZVT-PWM)软开关变换器基本工作原理,利用PSPICE软件对升压式ZVT-PWM软开关变换器进行仿真,给出了仿真结果,并与一般的升压变换器进行了比较。仿真结果表明,ZVT—PWM软开关变换技术具有开关损耗小、电源电压和负载适应范围宽、恒频控制和变换效率高等优点。  相似文献   

8.
传统型PWM控制的开关电源是硬件开关,开关损耗大,不利于向小型化,轻量化发展。本提出利用零电压开关谐振技术实现功率开关管的软开关技术,从而降低开关损耗,并采用SG3525为核心的主开关控制电路,提高系统的动态响应性能,同时采用UC3854对AC/DC变换过程作了功率因数校正,以改善输入电流的波形,提高电力资源的利用率。  相似文献   

9.
本文针对航天器用5kW离子电推力器核心供电模块屏栅电源的技术需求,采用移相全桥技术设计了低电压输入高电压输出的大功率屏栅电源模块。对比分析了ZVS和ZVZCS两种移相全桥方案后,得出ZVZCS更适合于电推进屏栅电源的设计。提出了ZVZCS移相全桥变换器CDD无损缓冲电路中辅助电容的设计方法,论述了屏栅电源功率级和控制电路的设计过程。通过实物产品验证表明:采用ZVZCS移相全桥技术设计的屏栅电源模块能在较宽的负载范围内实现超前桥臂和滞后桥臂的软开关,提高了变换器的效率;采用CDD无损缓冲电路能辅助实现滞后桥臂的零电流关断,降低原边电流的损耗,同时降低高压整流管的电压应力。在具备完善的输入滤波,浪涌抑制及母线开关等功能以后,最大功率下效率在95%以上。  相似文献   

10.
介绍了零电压开关下的IGBT的工作原理,通过对电路的计算机仿真和样机实验,证实了该项技术的优越性.  相似文献   

11.
A soft switching boost converter with zero-voltage transition (ZVT) main switch using zero-current switching (ZCS) auxiliary switch is proposed. Operating intervals of the converter are presented and analyzed. Design considerations are discussed. A design example with experimental results obtained from a 600 W, 100 kHz, 380 V output, power factor corrected, ac-to-dc, boost converter using insulated gate bipolar transistors (IGBTs) is presented, Results show that the main switch maintains ZVT while the auxiliary switch retains ZCS for the complete specified line and load conditions  相似文献   

12.
A new single-phase high power factor rectifier is proposed, which features regulation by conventional pulsewidth modulation (PWM), soft commutation, and instantaneous average line current control. A new zero-current-switching PWM (ZCS-PWM) auxiliary circuit is configured in the presented ZCS-PWM rectifier to perform ZCS in the switches and zero-voltage-switching (ZVS) in the diodes. Furthermore, soft commutation of the main switch is achieved without additional current stress by the presented ZCS-PWM auxiliary circuit. A significant reduction in the conduction losses is achieved, since the circulating current for the soft switching flows only through the auxiliary circuit and a minimum number of switching devices are involved in the circulating current path and the proposed rectifier uses a single converter instead of the conventional configuration composed of a four-diode front-end rectifier followed by a boost converter. Seven transition states for describing the behavior of the ZCS-PWM rectifier in one switching period are described. The PWM switch model is used to predict the system performance. A prototype rated at 1 kW, operating 60 kHz, with an input ac voltage of 220 V/sub rms/ and an output voltage 400 V/sub dc/ has been implemented in laboratory. An efficiency of 97.2% and power factor near 0.99 has been measured. The analysis and design of the control circuitry are also presented.  相似文献   

13.
A novel active snubber soft switching method is proposed. The unique location of the resonant inductor and capacitor ensures low current and voltage stresses in the converter. An analytical study of a boost dc-dc converter with the proposed active snubber method is presented in detail to illustrate its operation principles and design considerations. By simple modification, this soft switching method is also suitable for ac-dc boost topology, especially for high power-factor-correction (PFC) universal interface applications. A 500 W prototype system has been made to simulatively and experimentally verify the performance of the soft switching.  相似文献   

14.
A class-E DC-to-DC converter with half-wave controlled current rectifier is proposed. Its output voltage is controlled by the conduction angle of the rectifier switch at constant switching frequency. Zero voltage switching for all the switches can be maintained from full load to no load. Its steady state characteristics are analyzed and the effects of the circuit parameters are studied. Some extensions of the proposed converter are also discussed. The analysis is verified by PSPICE simulation and an experimental prototype  相似文献   

15.
高超声速飞行器大包线切换LPV控制方法   总被引:6,自引:0,他引:6  
张增辉  杨凌宇  申功璋 《航空学报》2012,33(9):1706-1716
高超声速飞行器飞行包线和参数变化范围大,气动参数存在较强不确定性,要求控制器能够适应大的飞行包线并具有较好的鲁棒性。针对上述问题,提出一种基于间隙度量的大包线滞后切换线性变参数(LPV)控制方法。依照时变参数将设计包线划分为若干子区域,将多胞理论和间隙度量引入控制器求解,提出了基于最优间隙度量的LPV控制方法,并利用此方法独立设计各子区域的LPV控制器,以改善控制器控制性能和鲁棒性能;利用基于重叠区域的滞后切换策略实现大包线内各子区域控制器的切换,以抑制切换面附近控制器的切换抖动,并证明了切换闭环系统的稳定性;最后以某型高超声速飞行器为对象设计了大包线滞后切换LPV控制器。仿真结果表明该方法可实现控制指令的精确跟踪,提高设计包线内LPV控制器的控制性能和鲁棒性能,并能保证切换系统的稳定性。  相似文献   

16.
基于滑模控制的航空发动机多变量约束管理   总被引:3,自引:0,他引:3  
杜宪  郭迎清  孙浩  徐清诗 《航空学报》2016,37(12):3657-3667
针对航空发动机传统单变量线性控制器min-max切换方法处理约束的不足,提出了单变量滑模控制器替换所有线性控制器的改进策略,并将该方法拓展为新切换逻辑下的多变量滑模控制结构。基于改进的单变量滑模控制器min-max结构,多变量控制策略中加入了多变量滑模主控制器和新的切换逻辑,充分利用发动机的所有控制量,克服了传统方法的保守性,进一步提高发动机约束下的动态性能。对稳态时工作的控制器进行了理论分析,建立了多变量控制器实现精确跟踪的充要条件。仿真结果表明,多变量控制方法在更苛刻的约束条件下能够实现跟踪任务,而且提高了推力跟踪的快速性,调节时间从1.91 s缩短到1.54 s,同时降低了稳态时的油耗。  相似文献   

17.
A resonant switch-mode power supply for the microwave electrothermal thruster (MET) is presented in this paper. The converter is operated with soft-switching at high frequency and exhibits a high efficiency. The soft switching technique used in this converter and the current-source inductor at the input minimize the EMI noise. Electric isolation between input and output is achieved with a center-tap transformer, whose magnetizing inductance is used as the resonant inductance of its resonant tank. The resulting high power density and increased reliability of the converter make it very suitable for aerospace applications. Simulation and experimental results of a 28 V/4.5 kV example are also presented  相似文献   

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