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系统并网技术 ★ 5.0

未知恒功率负载升压变换器的自适应滑模控制

Adaptive Sliding Mode Control of a Boost Converter With Unknown Constant Power Load

作者 David A. Zambrano-Prada · Abdelali El Aroudi · Oswaldo López-Santos · Luis Vázquez-Seisdedos · Luis Martí-Nez-Salamero
期刊 IEEE Access
出版日期 2025年1月
技术分类 系统并网技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 升压转换器 滑模控制 输出功率估计 输出电压调节 仿真实验
语言:

中文摘要

本文采用滑模控制及输出功率估计环路实现带恒功率负载的升压变换器输出电压调节。估计过程基于输出电压误差奇对称函数的积分,赋予开关调节器自适应特性。分析了有理、三角、sigmoid和符号型奇对称函数以选择最佳输出功率估计候选。推导了滑模存在条件和包括估计动态的平衡点稳定性条件。该控制器可采用运算放大器电路加除法器实现模拟实现。500W原型实验结果与理论预测和数值仿真完全一致。

English Abstract

In this paper, output voltage regulation in a boost converter with constant power load (CPL) is carried out by means of sliding-mode control (SMC) with an estimation loop of the output power. The estimation procedure is based on the integral of an odd-symmetric function of the output voltage error, which confers an adaptive nature to the switching regulator. Rational, trigonometric, sigmoid and {sign} -type odd-symmetric functions are analyzed to select the best candidate for output power estimation. In addition, a two-degree polynomial surface is considered to induce the sliding motions. Subsequently, the corresponding conditions for the existence of the sliding mode and for the stability of the equilibrium point including the estimation dynamics are derived. One of the main features of this proposal is that the resulting controller can be implemented analogically, requiring operational amplifier-based circuits plus a divider. PSIM ^ 0x00A9 and MATLAB ^ 0x00A9 simulations show a fast recovery in response to large-signal disturbances in the load power and zero steady-state output voltage error. Experimental results obtained from a 500 W prototype are in perfect agreement with both theoretical predictions and numerical simulations.
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SunView 深度解读

该自适应滑模控制技术可应用于阳光电源储能变流器的DC-DC变换器控制。通过自适应功率估计和滑模控制,提升变换器在恒功率负载条件下的稳定性和动态响应,降低电压波动,提高储能系统的可靠性,为工商业储能和电网侧储能提供高性能变换器控制方案。