...
首页> 外文期刊>Power Electronics, IEEE Transactions on >Minimum-Time Transient Recovery for DC–DC Converters Using Raster Control Surfaces
【24h】

Minimum-Time Transient Recovery for DC–DC Converters Using Raster Control Surfaces

机译:使用光栅控制表面的DC-DC转换器的最小时间瞬态恢复

获取原文
获取原文并翻译 | 示例
           

摘要

Fast power converters are desired in microprocessors, audio, and servomotor power supplies. Fixed-topology dc–dc converters have a minimum time in which to respond to line, load, and control change. This response depends on converter control, topology, and circuit parameters. Minimum-time control (MTC) considers these three items when it predicts postdisturbance steady-state points and directs capacitor voltage and inductor current in the shortest time. In this paper a nonlinear model-predictive control steers energy using geometrical curved control surfaces derived from piecewise linear (PWL) and bilinear models. The MTC differs from previous work on the topic in that it considers lossy components (a cause for nontriangular ripple) and is an open-form solution (as originally proposed by LaSalle in 1959). The different approach revealed a quantitative link between the needed control surface memory and state/parameter resolution. Results are generalized for two-state dc–dc converters and all parameter/control disturbances. An unconventional digital method was devised to accommodate the open-form solutions. It involved a priori control surface calculations, A/D scaling, surface quantizing, and image compression. The final control executed no real-time arithmetic operations. MTC performance was compared with other pulsewidth modulation controls and time-optimal control in simulations, and tests were performed in hardware using synchronous buck and boost converters.
机译:在微处理器,音频和伺服电机电源中需要快速功率转换器。固定拓扑的DC-DC转换器具有最短的时间来响应线路,负载和控制变化。该响应取决于转换器控制,拓扑和电路参数。最小时间控制(MTC)在预测扰动后的稳态点并在最短时间内指示电容器电压和电感器电流时会考虑这三个因素。在本文中,非线性模型预测控制使用从分段线性(PWL)和双线性模型派生的几何弯曲控制面来控制能量。 MTC与以前在该主题上的工作有所不同,因为它考虑了有损组件(非三角波纹的原因),并且是一种开放式解决方案(最初由LaSalle在1959年提出)。不同的方法揭示了所需的控制表面内存和状态/参数分辨率之间的定量联系。结果是针对两态dc-dc转换器和所有参数/控制干扰而得出的。设计了一种非常规的数字方法来适应开放式解决方案。它涉及先验控制表面计算,A / D缩放,表面量化和图像压缩。最终控制不执行实时算术运算。在仿真中将MTC的性能与其他脉冲宽度调制控件和时间最佳控件进行了比较,并使用同步降压和升压转换器在硬件中进行了测试。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号