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Series and parallel transformer resonant DC-DC converter using optimal digital servo and repetitive learning control schemes

机译:使用最佳数字伺服和重复学习控制方案的串联和并联变压器谐振DC-DC转换器

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摘要

A digitally processed repetitive learning control approach is presented in combination with a type-1 optimal digital servo control scheme of the resonant DC-DC converter using IGBT modules for a medical X-ray power generator. This scheme is considered for achieving a rapid transient response without any overshoot in addition to high-voltage characteristics with low ripple in its steady-state within a wide setting range of output voltage. To improve nonlinear voltage regulation performance of the series capacitor compensated transformer parallel resonant inverter-type fixed frequency, phase-shifted PWM DC-DC converter with a high-voltage transformer link, the repetitive learning control method is introduced into medical X-ray power generator systems using a series and parallel resonant DC-DC converter with high voltage transformer matching. This makes use of transformer parasitic parallel resonance with a series-compensated resonant capacitor connected to a transformer parasitic leakage inductor. The effectiveness of the repetitive learning control for this converter is discussed. A digital servo control scheme with error compensation loops is implemented to eliminate periodic voltage ripple fluctuations and abrupt voltage changes in the rectified DC input of this converter. This scheme also aims to realise good reproducibility, which is an important requirement in an X-ray power generator. The practical effectiveness of the repetitive learning control method and the type-1 optimal digital servo control scheme are confirmed by simulation analysis and experiments.
机译:提出了一种数字处理重复学习控制方法,该方法结合了使用医用X射线发电机的IGBT模块的谐振DC-DC转换器的1型最佳数字伺服控制方案。该方案被认为是用于实现快速瞬态响应,并且除了在宽范围的输出电压设置范围内其稳态下具有低纹波的高压特性之外,还没有任何过冲。为提高串联电容器补偿变压器并联谐振逆变器型固定频率,高压变压器相移的PWM DC-DC转换器的非线性调压性能,将重复学习控制方法引入医用X射线发电机系统使用带有高压变压器匹配的串联和并联谐振DC-DC转换器。这利用了带有串联补偿谐振电容器的变压器寄生并联谐振,该电容器与变压器寄生漏感器相连。讨论了此转换器的重复学习控制的有效性。实现了带有误差补偿环路的数字伺服控制方案,以消除该转换器的整流DC输入中的周期性电压纹波波动和突变的电压。该方案还旨在实现良好的再现性,这是X射线发电器的重要要求。通过仿真分析和实验验证了重复学习控制方法和第一类最优数字伺服控制方案的实际有效性。

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