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Self-Tuning Proportional-Type Performance Recovery Property Output Voltage-Tracking Algorithm for DC–DC Boost Converter

机译:DC-DC Boost转换器的自整定比例型性能恢复特性输出电压跟踪算法

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This article exhibits an output voltage-tracking control algorithm incorporating a self-tuning algorithm and disturbance observers (DOBs) for dc–dc boost converters without tracking error integrators, considering model nonlinearities, parameter variations, and load uncertainties. The proposed algorithm is designed such that it forces the output voltage to track its target trajectory driven by a time-varying low-pass filter (LPF), despite model-plant mismatches. This paper makes two main contributions. First, it constructs the self-tuning algorithm by updating the closed-loop cut-off frequency in the time-varying LPF to improve the transient tracking performance. Second, it embeds first-order DOBs in the proportional-type nonlinear controller to achieve both performance recovery and the offset-free properties. The experimental verifications are carried out to illustrate the effectiveness of the closed-loop system driven by the proposed technique with a 3-kW prototype dc–dc boost converter; the 46% improvement of the tracking performance is observed, compared with the conventional feedback-linearization controller.
机译:本文展示了一种输出电压跟踪控制算法,该算法结合了自校正算法和扰动观测器(DOB),适用于不带跟踪误差积分器的dc-dc升压转换器,同时考虑了模型非线性,参数变化和负载不确定性。设计该算法的目的是,尽管模型工厂不匹配,但它会迫使输出电压跟踪由时变低通滤波器(LPF)驱动的目标轨迹。本文有两个主要贡献。首先,它通过更新时变LPF中的闭环截止频率来构造自调谐算法,以提高瞬态跟踪性能。其次,它将一阶DOB嵌入比例型非线性控制器中,以实现性能恢复和无偏移特性。进行了实验验证,以说明所提出的技术与3kW原型DC-DC升压转换器一起驱动的闭环系统的有效性。与传统的反馈线性化控制器相比,跟踪性能提高了46%。

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