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Minimum-Time Digital Control with Raster Surfaces

机译:使用光栅曲面的最小时间数字控制

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Minimum time is theoretically the fastest a fixed topology converter can recover from large-signal reference, line, and load disturbances. It is made possible through curved geometric control surfaces. Previous researchers spent significant effort approximating closed forms for these curved surfaces - a tedious but necessary step for analog circuit implementation. Numerical open-form surfaces, nearly impossible to implement on analog circuits, were tested on a digital signal processor using raster surfaces composed of pixels. These forms apply to a broad set of dc-dc converters. Simulations that compare fast disturbance recovery and tight performance envelopes demonstrate the benefits of minimum-time control. Hardware techniques show that minimum-time control is possible with only a few memory accesses and logical comparisons, operations even low-end digital processors can perform. The numerical form makes fewer approximations and applies to a much broader set of dc-dc converters.
机译:最短时间理论上是最快的固定拓扑转换器可以从大信号参考,线路和负载干扰恢复。通过弯曲的几何控制表面可以实现。以前的研究人员花费了近似封闭形式的重要努力 - 用于模拟电路实现的繁琐但必要的步骤。使用由像素组成的光栅表面在数字信号处理器上测试数值开放表面,几乎不可能实现在模拟电路上。这些形式适用于广泛的DC-DC转换器。比较快速干扰恢复和紧密性能信封的模拟表明了最小时间控制的好处。硬件技术表明,只有少数内存访问和逻辑比较,可能执行最小时间控制,即使是低端数字处理器也可以执行操作。数值形式较少近似,适用于更广泛的DC-DC转换器。

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