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A Fast Algorithm for Software Implementation of State-Space Control of DC-DC Converters

机译:一种快速实现DC-DC转换器状态空间控制的软件实现算法

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This paper demonstrates the use of state-space based control method as an enabler for Software-Intensive Control of dc/dc converters, with a worked example for a boost converter. The entire process flow is software controlled: design, optimization, and implementation. Despite having the theory of state-space control known for over 20 years, the power supply industry seemed to avoid its use due to complexity of mathematic apparatus and implementation. A novel algorithm is proposed within this paper to allow running the microcontroller code at higher frequency rates. The control software yields very simple and it is demonstrated to be implementable on any general use microcontroller, with generic software functions from C-language or assembly libraries. Snippets of software routines are provided for a Microchip platform to illustrate their simplicity. Execution time is compared with previous solutions to demonstrate this as possibly the fastest algorithm, at around 4 μsec or 250 kHz, for control including current estimation, run on a general use processor without dedicated digital hardware controller. Optimization of code and design are followed up with MATLAB and Microchip microcontroller example details.
机译:本文演示了使用基于状态空间的控制方法作为DC / DC转换器的软件密集型控制的启动器,具有升压转换器的工作示例。整个过程流是控制的软件:设计,优化和实现。尽管拥有20多年的状态空间控制理论,但电源行业似乎避免了由于数学设备和实施的复杂性而使用。在本文中提出了一种新颖的算法,以允许以更高的频率运行微控制器代码。控制软件产生非常简单,并且它被证明可在任何一般使用微控制器上可实现,具有来自C语言或组装库的通用软件功能。为微芯片平台提供软件例程片段以说明他们的简单性。执行时间与先前的解决方案进行比较,以证明这一点最快的算法,如4μsec或250 kHz,用于控制包括电流估计,在没有专用数字硬件控制器的一般使用处理器上运行。使用MATLAB和MICROCHIP微控制器示例详细信息跟踪代码和设计的优化。

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