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一种用于DC-DC变换器的固定开关频率快速终端滑模面新奇异性问题解法
A New Singularity Problem Solved Fast Terminal Sliding Surface With Fixed Switching Frequency for DC-DC Converters
| 作者 | Cagdas Hisar · Guven Balta · Ibrahim Sefa · Necmi Altin |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2024年12月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 DC-DC变换器 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 滑模控制 快速终端滑模面 降压DC - DC转换器 抛物线调制 实验结果 |
语言:
中文摘要
与其他控制类型相比,滑模控制(SMC)除了具有高精度、简单性、鲁棒性、快速响应以及在给定范围内对干扰不敏感等优点外,还具有更大的无界设计潜力。本研究利用这种设计自由度特性,提出了一种新型快速终端滑模面,它属于滑模控制新一代滑模面。通过将这种新滑模面与文献中的同类滑模面进行比较,仿真数据表明,该滑模面在获得快速动态响应方面非常有效。此外,这种新型滑模流形解决了与快速终端滑模面相关的奇异性问题,理论分析对此进行了详细阐述。从实验角度来看,所提出的滑模面在降压型直流 - 直流转换器上进行了测试。为确保转换器以固定开关频率运行,采用了抛物线调制(PM)方法,该方法在文献中作为一种新颖的方法被提出,可直接生成开关信号。为突出抛物线调制的重要性,系统也采用滞环调制(HM)方法运行。系统受到各种干扰,分别针对抛物线调制和滞环调制获得了动态结果。相关实验结果表明,这种创新滑模面在动态和稳态条件下均成功控制了转换器的状态变量。实验结果还显示,采用抛物线调制方法可获得固定开关频率。
English Abstract
Compared to other control types, Sliding-Mode Control (SMC) offers a more unbounded design potential in addition to its high precision, simplicity, robustness, rapid response, and insensitivity to disturbances within a given range. Using the design freedom feature, this study proposes a novel fast terminal sliding surface, which is one of the new generation surfaces of SMC. By comparing the new surface with its counterparts in the literature, it has been shown with simulation data how effective it is in obtaining fast dynamic responses. Furthermore, the new sliding manifold solves the singularity problem associated with fast terminal sliding surfaces and this is detailed by theoretical analyses. From an experimental perspective, the suggested surface is tested on a step-down DC-DC converter. To ensure that the converter operates at a fixed switching frequency, parabolic modulation (PM), which is given as a novel approach in the literature and directly creates the switching signal, is utilized. To highlight the importance of PM, the system is also run with hysteresis modulation (HM). The system is subjected to a variety of disturbances, and dynamic results are obtained separately for both PM and HM. The relevant experimental outcomes show that the innovative surface successfully controlled the converter's state variable in both dynamic and steady-state conditions. Experimental results further reveal that the fixed switching frequency is obtained with the PM approach.
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SunView 深度解读
该固定开关频率快速终端滑模控制技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。通过解决传统滑模控制的奇异性问题,可显著提升DC-DC变换器在储能系统中的动态响应速度和稳态精度,特别适用于储能系统的双向DC-DC变换环节。固定开关频率特性有利于优化磁性元件设计、降低EMI滤波难度,提升系统功率密度。该方法的有限时间收敛特性可增强储能系统在电网扰动下的鲁棒性,改善功率波动抑制能力。建议将此技术应用于新一代储能变流器的内环控制算法优化,并结合SiC器件高频特性,进一步提升系统效率和可靠性,增强阳光电源储能产品的市场竞争力。