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An Extremely Low Ripple High Voltage Power Supply for Pulsed Current Applications

机译:用于脉冲电流应用的极低纹波高压电源

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This article describes the development of an 18 kV, 30 kW power supply for a pulsed current load with the maximum current of 20 A and a di/dt equal to 100 A/mu s. The achieved output ripple is less than 0.01%. In such a high level of precision, the most important issues are considerable difference between the instantaneous and average output powers, as well as insufficient reaction speed of the converter to the fast load change. Very low level of the voltage feedback and its sensitivity to the noise. The first issue necessitates a notable overdesign of the converter switches if the output voltage precision is dedicated to the converter. The second issue raises the problems relevant to observing the voltage ripple and providing it for the control loop. This article proposes, a fast and high current linear regulator developed based on the load current feedforwarding. Using this approach, the fast regulator compensates the voltage change caused by a high level of instantaneous power. The main converter maintains the average power. Thus, there is no need for converter overdesigning. Furthermore, the problems relevant to the high voltage feedback and providing it for the control loop are removed. The voltage feedback is solely served to correct the current loop probable error. Hence, the sensitivity of the control loop against the existing noise is minimized. Despite existing a 600 nF capacitor as the output capacitor, the output voltage drop is less than 0.01% in a wide range of the output current pulse up to 250 mu s. The power supply is constructed and experimental results are provided to verify the mentioned specifications.
机译:本文介绍了一个18 kV,30 kW电源的开发,用于脉冲电流负载,最大电流为20a和di / dt等于100 a / mu s。实现的输出纹波小于0.01%。在如此高的精度中,最重要的问题是瞬时和平均输出功率之间的相当大的差异,以及转换器的反应速度不足以快速负载变化。电压反馈的级别和对噪声的敏感度非常低。第一个问题需要如果输出电压精度专用于转换器,则需要一个值得注意的转换器开关。第二个问题提出了与观察电压纹波相关的问题,并为控制回路提供它。本文提出了一种基于负载电流前馈开发的快速和高电流的线性调节器。使用这种方法,快速调节器补偿由高水平的瞬时电力引起的电压变化。主转换器保持平均功率。因此,不需要转换器过度指定。此外,去除与高压反馈相关的问题并为控制回路提供。电压反馈仅用于校正电流循环可能的误差。因此,控制回路对现有噪声的灵敏度最小化。尽管存在600个NF电容作为输出电容,但输出电压下降小于输出电流脉冲的宽范围为250μs。构造电源,提供实验结果以验证提到的规格。

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