首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >A Hyperbolic Tangent Adaptive PID + LQR Control Applied to a Step-Down Converter Using Poles Placement Design Implemented in FPGA
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A Hyperbolic Tangent Adaptive PID + LQR Control Applied to a Step-Down Converter Using Poles Placement Design Implemented in FPGA

机译:双曲正切自适应PID + LQR控制应用于采用FPGA实现的极点布置设计的降压转换器

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This work presents an adaptive control that integrates two linear control strategies applied to a step-down converter: Proportional Integral Derivative (PID) and Linear Quadratic Regulator (LQR) controls. Considering the converter open loop transfer function and using the poles placement technique, the designs of the two controllers are set so that the operating point of the closed loop system presents the same natural frequency. With poles placement design, the overshoot problems of the LQR controller are avoided. To achieve the best performance of each controller, a hyperbolic tangent weight function is applied. The limits of the hyperbolic tangent function are defined based on the system error range. Simulation results using the Altera DSP Builder software in a MATLAB/SIMULINK environment of the proposed control schemes are presented.
机译:这项工作提出了一种自适应控制,该控制集成了应用于降压转换器的两种线性控制策略:比例积分微分(PID)和线性二次调节器(LQR)控制。考虑到转换器的开环传递函数并使用极点放置技术,设置了两个控制器的设计,以使闭环系统的工作点呈现相同的固有频率。采用极点布置设计,可以避免LQR控制器的过冲问题。为了获得每个控制器的最佳性能,应用了双曲正切权重函数。双曲正切函数的极限是根据系统误差范围定义的。给出了在所提出的控制方案的MATLAB / SIMULINK环境中使用Altera DSP Builder软件的仿真结果。

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