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New technologies to improve the transient response of Buck converters.

机译:改善Buck转换器瞬态响应的新技术。

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摘要

As the speed and power demands on Buck converters continue to increase, it has become time to replace the linearly-controlled conventional Buck converter. Digital circuits, such as microprocessors, are requiring higher dynamic currents, at lower voltages, than ever before.;The first contribution is an analog "charge balance controller". The control method utilizes the concept of capacitor charge balance to achieve a near-optimal transient response for Buck converters undergoing a rapid load change. Unlike previous work, the proposed controller does not require expensive and/or slow analog multipliers/dividers. In addition, the nominal inductance value is not required by the proposed controller. Simulation and experimental results demonstrate a significant improvement in transient performance over that of a linear voltage-mode controller.;For low duty cycle applications, the unloading transient performance of a Buck converter tends to be poor when compared to the corresponding loading transient performance. Therefore, the second contribution is an auxiliary circuit and an analog auxiliary controller which drastically improves the performance of a Buck converter undergoing an unloading transient. Significant overshoot reduction was observed over that of a linearly-controlled conventional Buck converter.;The third contribution is a digital implementation of the aforementioned "charge balance control" concept. Through digital implementation the control law is extended to include load-line regulation. Unlike previous work, large lookup tables are not required to perform complex mathematical functions, thus the number of required gates is significantly reduced.;Traditionally, such Buck converters have been controlled by linear voltage-mode or current-mode control methods. While these controllers offer such advantages as fixed switching frequencies and zero steady-state error, their reaction speed is inherently limited by their bandwidth which is a fraction of the converter switching frequency. Therefore, to improve the transient response of a Buck converter in a practical manner, four novel ideas are presented in this thesis.;The final contribution is a digital implementation of the "charge balance controller" capable of operating with the previously-mentioned auxiliary circuit. This complete solution is capable of improving the voltage deviation caused by loading and unloading transients. In addition, the combined auxiliary circuit and control law is extended to load-line regulation applications.
机译:随着对Buck转换器的速度和功率要求的不断提高,现在已经成为替换线性控制的传统Buck转换器的时候了。诸如微处理器之类的数字电路比以往任何时候都需要更高的动态电流和更低的电压。;第一个贡献是模拟“电荷平衡控制器”。该控制方法利用电容器电荷平衡的概念,以使经历快速负载变化的Buck转换器获得接近最佳的瞬态响应。与以前的工作不同,所提出的控制器不需要昂贵和/或缓慢的模拟乘法器/除法器。此外,建议的控制器不需要标称电感值。仿真和实验结果表明,与线性电压模式控制器相比,其瞬态性能有了显着改善。对于低占空比应用,与相应的负载瞬态性能相比,Buck转换器的卸载瞬态性能往往较差。因此,第二贡献是辅助电路和模拟辅助控制器,其极大地改善了经历卸载瞬变的降压转换器的性能。与线性控制的传统Buck转换器相比,观察到了明显的过冲减少。第三点是上述“电荷平衡控制”概念的数字实现。通过数字实现,控制法则扩展到包括负荷线调节。与以前的工作不同,不需要大的查找表即可执行复杂的数学功能,因此所需的门数大大减少。传统上,此类Buck转换器已通过线性电压模式或电流模式控制方法进行控制。尽管这些控制器具有固定开关频率和零稳态误差等优点,但它们的反应速度固有地受到带宽的限制,带宽是转换器开关频率的一部分。因此,为了以实用的方式改善Buck转换器的瞬态响应,本文提出了四个新颖的​​想法。;最后的贡献是能够与前面提到的辅助电路一起工作的“电荷平衡控制器”的数字实现。 。这种完整的解决方案能够改善由加载和卸载瞬变引起的电压偏差。此外,组合的辅助电路和控制法则扩展到了负载线调节应用。

著录项

  • 作者

    Meyer, Eric David.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 283 p.
  • 总页数 283
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:22

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