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首页> 外文期刊>IEEE transactions on industrial informatics >A Programmable Controller IC for DC/DC Converter and Power Factor Correction Applications
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A Programmable Controller IC for DC/DC Converter and Power Factor Correction Applications

机译:适用于DC / DC转换器和功率因数校正应用的可编程控制器IC

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This paper presents the design of a low-cost programmable controller integrated circuit (IC) for general power electronics applications. The architecture of the programmable controller IC consists of 10-bit ADC and DAC, programmable counter array (PCA), which is configured to function as PWM, and a control unit (processor) for regulation. The processor unit is configured as digital compensator, through fewer program steps to perform accurate compensation on the voltage control loop of the converter system. Limit-cycle oscillation is minimized through inclusion of a sufficiently low integral gain term in the control law. A hybrid control method is first used to control the input voltage and current waveforms to achieve a unity power factor correction. It is observed that the programmable converter achieves the high efficiency power conversion. The conversion efficiency of the digital controlled boost converter is 91% with a 0.8% ripple voltage performance. While in power factor correction (PFC) circuit application, the power factor and output ripple voltage of converter are 0.995 and 0.93%, respectively. The chip is implemented with TSMC 0.25 um CMOS process.
机译:本文介绍了一种用于通用电力电子应用的低成本可编程控制器集成电路(IC)的设计。可编程控制器IC的架构包括10位ADC和DAC,可编程计数器阵列(PCA)(用于配置为PWM)和控制单元(处理器)以进行调节。处理器单元通过较少的程序步骤配置为数字补偿器,以对转换器系统的电压控制回路执行准确的补偿。通过在控制定律中包含足够低的积分增益项,可以将极限周期振荡最小化。首先使用混合控制方法来控制输入电压和电流波形,以实现单位功率因数校正。可以看出,可编程转换器实现了高效率的功率转换。数控升压转换器的转换效率为91%,纹波电压性能为0.8%。在功率因数校正(PFC)电路应用中,转换器的功率因数和输出纹波电压分别为0.995%和0.93%。该芯片采用TSMC 0.25 um CMOS工艺实现。

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