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首页> 外文期刊>Journal of power electronics >An FPGA-Based Modified Adaptive PID Controller for DC/DC Buck Converters
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An FPGA-Based Modified Adaptive PID Controller for DC/DC Buck Converters

机译:基于FPGA的DC / DC Buck转换器的自适应PID控制器

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摘要

On the basis of the conventional PID control algorithm, a modified adaptive PID (MA-PID) control algorithm is presented to improve the steady-state and dynamic performance of closed-loop systems. The proposed method has a straightforward structure without excessively increasing the complexity and cost. It can adaptively adjust the values of the control parameters (K-p, K-i and K-d) by following a new control law. Simulation results show that the line transient response of the MA-PID is better than that of the adaptive digital PID because the differential coefficient Kd is introduced to changes. In addition, experimental results based on a FPGA indicate that the MA-PID control algorithm reduces the recovery time by 62.5% in response to a 1V line transient, 50% in response to a 500mA load transient, and 23.6% in response to a steady-state deviation, when compared with the conventional PID control algorithm.
机译:在传统PID控制算法的基础上,提出了一种改进的自适应PID(MA-PID)控制算法,以提高闭环系统的稳态和动态性能。所提出的方法具有简单的结构,而不会过度增加复杂性和成本。它可以通过遵循新的控制规律来自适应地调整控制参数(K-p,K-i和K-d)的值。仿真结果表明,由于将差分系数Kd引入了变化,因此MA-PID的线路瞬态响应优于自适应数字PID的线路瞬态响应。此外,基于FPGA的实验结果表明,MA-PID控制算法在1V线路瞬态响应中可将恢复时间减少62.5%,在500mA负载瞬态中响应可将恢复时间减少50%,而在稳定状态下响应则减少23.6%与常规PID控制算法相比时的状态偏差。

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