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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Direct PWM Technique for a Single-Phase Full-Bridge Inverter Through Controlled Capacitor Charging
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A Direct PWM Technique for a Single-Phase Full-Bridge Inverter Through Controlled Capacitor Charging

机译:通过控制电容器充电的单相全桥逆变器直接PWM技术

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The controlled-capacitor-charging (CCC) technique is utilized in this paper to synthesize a sinusoidal voltage at the output from the unregulated dc at the input. The method is based on the controlled charging/discharging of a capacitor to realize the desired voltage waveform. A capacitor that is connected across the load is charged/discharged through an inductor by applying high-frequency pulses. The applied pulses could be of either positive or negative polarity, depending on the error signal in the controller. The controller senses the output voltage and current and operates to maintain zero-current switching at every turn-on while keeping the output voltage close to the reference waveform by a tracking-control algorithm, enforcing limits in maximum switching frequency and voltage ripples. This paper presents a direct method of implementing the pulsewidth modulation for the single-phase full-bridge inverter, using the CCC technique. A simple procedure to design such an inverter is also discussed. The proposed controller is simulated in a personal computer simulation program with integrated circuit emphasis. Supporting results from an experimental prototype confirm the usefulness of the proposed controller. The inverter may be used in uninterruptible power supply and many other applications.
机译:本文采用受控电容器充电(CCC)技术从输入端的未调节dc合成输出端的正弦电压。该方法基于电容器的受控充电/放电以实现期望的电压波形。通过施加高频脉冲,通过电感器对连接在负载两端的电容器进行充电/放电。所施加的脉冲可以是正极性也可以是负极性,具体取决于控制器中的错误信号。控制器感应输出电压和电流,并在每次导通时保持零电流开关,同时通过跟踪控制算法将输出电压保持在接近参考波形的水平,从而限制了最大开关频率和电压纹波。本文提出了一种使用CCC技术实现单相全桥逆变器脉宽调制的直接方法。还讨论了设计这种逆变器的简单过程。所提出的控制器是在具有集成电路重点的个人计算机仿真程序中进行仿真的。实验原型的支持结果证实了所提出控制器的实用性。逆变器可用于不间断电源和许多其他应用。

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