Implementation of Energy based Controller for Buck Boost Converter using FPAA

Walarcheth Thongrailuck, Witthawas Pongyart
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Abstract

This paper presents an application of Field Programmable Analog Array (FPAA) in the implementation of an energy-based controller to control the voltage of a buckboost converter. The converter is a non-linear and non-minimum phase system with variable structure, which is an interesting topic in control engineering. The non-linear controller obtained using the port-Hamiltonian approach exhibits impressive performance. However, parasitic resistance in the inductor and other components brings steady state error in the output. To solve this issue, an outer loop with an integrator is added. The use of an FPAA makes it easier to implement the developed controller compared to using a microcontroller because the controller can be directly synthesized by connecting the analog blocks.
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利用FPAA实现Buck升压变换器的能量控制器
本文介绍了现场可编程模拟阵列(FPAA)在buck - boost变换器电压控制中的应用。变换器是一种非线性、非最小相位变结构系统,是控制工程中的一个研究热点。采用端口-哈密顿方法得到的非线性控制器表现出令人印象深刻的性能。然而,电感和其他元件中的寄生电阻会给输出带来稳态误差。为了解决这个问题,增加了一个带有积分器的外循环。与使用微控制器相比,使用FPAA使开发的控制器更容易实现,因为控制器可以通过连接模拟块直接合成。
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