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1.
基于SVPWM的高功率因数整流器研究   总被引:1,自引:0,他引:1       下载免费PDF全文
介绍了三相电压型PWM整流器的数学模型和空间矢量PWM(SVPWM)控制技术,并根据设计要求完成了主电路中相关参数的设计。实验发现,采用SVPWM电流控制技术能够使网侧电压与电流同相位,表明电压型PWM整流器实现了高功率因数整流。  相似文献   

2.
王涛  吴黎明  张晓 《航空动力学报》2017,44(5):17-21, 45
针对三相电压型脉宽调制(PWM)整流器有限控制集模型预测控制采样频率高、开关频率不固定的缺点,提出了一种定频模型预测控制方法。通过求解价值函数得到PWM整流器交流侧下一采样时刻所要输出的电压值,利用空间矢量脉宽调制技术输出计算得到的电压值,实现定频模型预测控制。仿真与试验结果表明:所提出的控制算法开关频率恒定,稳态电流谐波含量低,实现了整流器高功率因数运行。  相似文献   

3.
一种新型交流恒功率负载仿真模型   总被引:1,自引:1,他引:0  
根据闭环控制的高功率因数(HPF)脉冲宽度调制(PWM)整流器的恒功率工作特性,对交流(AC)恒功率负载(CPL)仿真模型进行了研究。采用输入电流波形跟随电压波形的方法,利用MATLAB建立了交流恒功率负载的仿真模型。在模型两端加载的电压不含谐波和含有谐波的两种情况下,模型均可以自动计算出输入电流有效值(RMS),使得模型输入平均功率保持恒定,并能生成电流波形,反映出电压谐波对电流波形的影响。模型仿真结果与实际高功率因数PWM整流器的输入波形进行了比较,验证了该模型的正确性。  相似文献   

4.
变频器是利用电力半导体器件的通断作用将工频电源变换为另一频率的电能控制装置。我们现在使用的变频器主要采用交一直一交方式(VVVF变频或矢量控制变频),先把工频交流电源通过整流器转换成直流电源,然后再把直流电源转换成频率、电压均可控制的交流电源以供给电动机。变频器的电路一般由整流、中间直流环节、逆变和控制4个部分组成。整流部分为三相桥式不可控整流器,逆变部分为IGBT三相桥式逆变器,且输出为PWM波形,中间直流环节为滤波、直流储能和缓冲无功功率。  相似文献   

5.
航空机电作动器的混合整流全状态反馈控制   总被引:1,自引:0,他引:1  
白龙  孙楚  周元钧 《航空学报》2016,37(6):1940-1952
研究了一种适用于多电飞机供电系统的新型混合整流电路,并针对航空机电作动器负载特殊的用电特性,提出了一种基于全状态反馈的混合整流控制方法,在保证整流效果的同时,解决了负载功率短时大范围变化引起的直流电压不稳定问题。这种新型混合整流电路将二极管整流电路和脉宽调制(PWM)整流电路并联输出接负载,两者共同承担有功功率且比例可控,通过适当控制PWM电路达到网侧低谐波的目的,且当负载制动时,能量可以回馈交流侧电网。建立了混合整流器的线性化全状态数学模型,设计了基于线性二次型(LQR)最优化理论的全状态反馈控制策略。通过在MATLAB/Simulink下的建模与仿真,比较了全状态反馈控制方法与传统三状态反馈控制方法,并在机电作动器样机上进行了实验验证。仿真和实验结果表明,采用全状态反馈控制的新型混合整流方案对于功率大范围变化负载具有更好的控制性能。  相似文献   

6.
四象限脉冲整流器广泛应用于电力牵引传动系统。IGBT是脉冲整流器的核心器件,易发生故障,对其开路故障检测进行了研究。首先分析了脉冲整流器IGBT开路故障下的特征。然后用网侧电流平均值除以电流绝对值的平均值,设为检测变量,对各功率等级、各故障下的检测变量进行分析,总结出设置阈值的方法;最后通过硬件在环仿真验证了检测方法的有效性。  相似文献   

7.
谢黎雄 《航空制造技术》2012,(13):145-147,159
本文叙述了气体保护钎焊的机理和工艺方法,系统分析了影响航空发动机整流器钎焊质量的诸多因素,对钎焊过程中产生的缺陷进行了分析,采取了针对性的措施,使整流器钎焊的一次合格率由49.3%提高到80.7%。  相似文献   

8.
移相 PWM波是很多开关电源常用的驱动脉冲信号。双向全桥直流变换器(Bidirectional-Full-Bridge DCDC Converter,BDC)在双重移相控制方式下时需要 4组两两互补的移相 PWM波。文章基于 TMS320F2812型 DSP(Digital Signal Processor)分析了 2种生成移相 PWM的方法。为提高双向全桥直流变换器工作的安全性和可靠性,为移相 PWM波设置死区时间。对所提出的方法进行测试后结果良好,对于双向全桥直流变换器闭环控制系统的构建具有重要意义。  相似文献   

9.
李林  吴红飞  朱建鑫  黄家杰  杨帆 《航空学报》2021,42(6):624584-624584
为了消除高峰均功率比低频脉冲负载对有限容量机载交流供电系统的周期性冲击等不利影响,对开关器件进行集成和复用,提出了能够同时提供功率解耦端口和直流输出端口的三端口功率解耦整流器。通过将三端口整流器与DC/DC变换器组合,构造出集成低频脉冲功率解耦端口的机载电源系统,实现了直流侧周期性脉动功率和交流源侧功率的解耦,并保证低频脉冲负载正常供电需求。详细分析了三端口整流器的工作原理,提出了与之相适应的功率控制方法和调制策略,基于开关器件分时复用原理,实现了交流端口到两个直流端口的功率传输和分配,并实现了两个直流端口功率切换过程的平滑过渡。实验结果验证了所提三端口脉冲功率解耦整流器的有效性和可行性。  相似文献   

10.
PWM型半桥式开关稳压电源的设计   总被引:2,自引:1,他引:1  
介绍了一款基于PWM技术的半桥式开关稳压电源.给出了高频变压器、PWM控制及驱动电路的详细设计方法.用该方法设计了一台功率为150 W、输出电压为 15 V的半桥式开关稳压电源,并给出了实验波形.  相似文献   

11.
High power factor AC/DC/AC converter with random PWM   总被引:1,自引:0,他引:1  
A three-phase AC/DC/AC converter is presented with a power factor preregulator to improve the power quality in the input side and a pseudorandom noise generator to reduce the emitted acoustic noise and the mechanical vibration for an induction motor drive. The space vector modulation with hysteresis current control for a voltage source rectifier is adopted to simplify the hardware circuit. A control scheme is presented to drive the supply current following the reference current. The amplitude of reference current for the pulsewidth modulation (PWM) rectifier is derived from the DC bus voltage regulator and the estimated output power. Random switching frequency technique for a three-phase PWM inverter system to reduce the annoying tonal noise and resonant vibration from an induction motor is described. By randomly varying the instantaneous PWM switching frequency from one cycle to the next, the frequency distribution of harmonics is spread in a wide frequency range. The major advantage for using such a strategy is the nonrepetitive output spectral characteristic that results in reduction of torque pulsations in motor drive systems. The nearly unity power factor at the three-phase rectifier and the absence of acoustic noise concentrated at the specific tones which is usually present with conventional sinusoidal modulation are verified by the experimental tests  相似文献   

12.
李慧  范新桥  范梦杨 《航空动力学报》2018,45(8):98-103, 109
在分析直驱永磁同步风力机速度环特性的基础上,推导出机侧脉宽调制(PWM)变流器速度控制环的闭环传递函数。由于该传递函数中存在非原点闭环零点,提出了一种改进的PI控制策略,消除了非原点闭环零点,改善了系统在受扰时的动态特性,提高了并网电流的波形质量,并将其策略应用于网侧PWM变流器的控制。仿真结果表明,改进的PI控制策略能够有效减少机侧和网侧控制系统动态响应时的超调量,加快系统响应速度,提高整个双PWM型直驱永磁同步风电系统并网运行的稳定性。  相似文献   

13.
A single-phase ac/ac converter based on neutral-point-clamped scheme is proposed to perform unity input power factor and to provide a stable ac voltage to the critical loads. The ac/dc rectifier part is controlled to generate a unipolar pulsewidth modulation (PWM) waveform on the ac terminal by using four power switches with voltage stress of half the dc-link voltage. The carrier-based current control scheme is employed in the inner control loop to track the line current command. To regulate the dc bus voltage, a proportional-integral (PI) control is adopted in the outer control loop. The dc/ac inverter part of the system with four power switches is employed to generate a stable and clean sinusoidal output voltage to the critical load. The instantaneous current control scheme is used to track the output voltage command. To verify the effectiveness of the proposed control algorithm, the simulation and experimental results based on a laboratory prototype were implemented and discussed.  相似文献   

14.
分析单相PWM整流电路的结构、工作原理和控制方法,通过选择适当的工作模式和工作时序,可使PWM整流电路输出直流电压稳定。将正弦脉宽调制技术应用于PWM整流电路,使其交流侧输入电流非常接近正弦波,且与输入电压同相位。同时调节交流侧电流的大小和相位,使能量在交流侧和直流侧双向流动。在建立基于Simu-link7.6的仿真模型基础上,通过分析PWM整流电路各处电压、电流波形,验证其控制方法及仿真设计的正确性。  相似文献   

15.
分析了双凸极无刷直流发电系统突加、卸负载时的工作机理及滤波电容的影响,在此基础上提出了负载电流反馈补偿控制方法,以提高系统的动态性能。实验结果表明,在系统突加和突卸负载两种情况下,加入负载电流反馈补偿控制后,不仅电压恢复时间明显缩短,而且电压波动幅值也大大减小,系统的动态特性得到了明显的提高。该方法可推广应用到不同类型的直流发电机的数字调压控制中。  相似文献   

16.
电流滞环控制的三相馈能式电子负载仿真研究   总被引:1,自引:0,他引:1  
论述了一种用于航空发电机测试用的三相馈能式电子负载功率拓扑方案及其电流控制策略。首次将三相馈能式拓扑方案应用于航空发电机测试负载,这种馈能式电子负载采用电流滞环PWM技术,可实现功率因数无级调节,既可模拟阻性、容性、感性等各种航空发电机负载形式,又能通过三相逆变器将发电机发出的电能以功率因数1回馈给电网,这样降低了设备的功耗,缩小了设备的体积。建立了系统d-q模型。对系统方案进行了理论论证。并给出了Matlab仿真结果。  相似文献   

17.
The design and implement action of a DSP-based fully digital-controlled single-phase pulsewidth modulated (PWM) dc-ac converter for ac voltage regulation is described. The proposed multiloop digital controller (MDC) consists of a current controller, a voltage controller, and a feedforward controller. This MDC was realized using a single-chip digital signal processor (DSP). The PWM gating signals are determined at every sampling instant by the proposed multiloop digital control scheme using a set of detected feedback signals. A software current control; scheme has been developed to achieve fast current control of the PWM inverter and decouple the inductor of the output filter. Experimental results have been given to verify the proposed digital control scheme. The constructed DSP-based PWM dc-ac converter system can achieve fast dynamic response and with low total harmonic distortion (THD) for rectifier type of loads  相似文献   

18.
A general closed-form duty cycle control law is derived based on the linear combination of two sets of continuous duty cycle control laws. From this general solution one can generate infinitely many pulsewidth modulation (PWM) control strategies to achieve the same ideal performance. Then, from the resulting closed-form solution, a general explicit lower bound and a general explicit upper bound of the output dc voltage are derived. Besides the academic interests, these bounds are very useful practically as a convenient guideline for helping quickly design the three-phase boost rectifier. Finally, some illustrative examples are given and some experimental results provided for verifying the derived bounds  相似文献   

19.
Three control techniques for a high power factor multilevel pulsewidth modulation (PWM) rectifier are proposed. The proposed rectifier is based on series connection of full-bridge cell to achieve a high power factor, low current distortion, low voltage stress of power semiconductors and two balanced output voltages. The look-up table is used in the proposed control schemes to reduce the hardware circuit. A capacitor voltage compensator is used to balance two dc capacitor voltages in order to obtain high quality PWM voltage pattern. Based on the proposed control schemes, two-level or three-level PWM pattern can be generated on the ac side of the adopted rectifier. The proposed techniques for a high power factor multilevel rectifier illustrate its validity and effectiveness through the respective simulations and experiments. According to the measured results, the current harmonics drawn from the mains meet the International Electrotechnical Commission (IEC) 1000-3-2 limits  相似文献   

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