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单相三电平飞跨电容升压逆变器的分频控制与稳定性分析
Frequency-Divided Control and Stability Analysis of Single-Phase Three-Level Flying Capacitor Boost Inverter
| 作者 | Biyang Yu · Hua Han · Yao Sun · Shiming Xie · Lifang Ha · Yonglu Liu |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年11月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 三电平 多物理场耦合 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 单相三电平飞跨电容升压逆变器 分频控制方法 直流母线电压脉动 稳定性分析 硬件原型验证 |
语言:
中文摘要
单相三电平飞跨电容(TLFC)升压逆变器是一种无需额外元件即可实现有源功率解耦的电力变换器。然而,其控制自由度少于控制目标数,给控制器设计带来挑战。为此,本文提出一种分频控制方法,将系统的解耦控制输入分解为直流分量与交流分量分别设计:直流分量用于调节飞跨电容的平均电压,交流分量抑制直流母线电压脉动。该方法可有效抑制输入电流与母线电压中的二倍工频纹波,并具有较强鲁棒性。针对TLFC升压逆变器的非线性周期时变特性,建立了单输入单输出导纳模型以分析系统在所提控制下的稳定性。最后通过1.5 kW硬件样机验证了所提方法的有效性。
English Abstract
The single-phase three-level flying capacitor (TLFC) boost inverter is a power converter with active power decoupling without requiring additional components. However, it has the characteristic that the number of control degrees of freedom is fewer than the number of control targets, which poses a challenge to controller design. To address this issue, this article proposes a frequency-divided control method for the TLFC boost inverter. According to the frequency-divided idea, the decoupling control input of the system is divided into a dc component and an ac component design. The dc component regulates the flying capacitor’s average voltage, and the ac component suppresses the dc bus voltage’s pulsation. The proposed method can effectively suppress the double-line-frequency ripple in both the input current and the bus voltage and exhibit high robustness. Furthermore, considering that the TLFC boost inverter is a nonlinear periodic time-varying system, a single-input single-output (SISO) admittance model is developed to analyze the system’s stability under the proposed control method. Finally, a 1.5-kW hardware prototype is built to validate the effectiveness of the proposed control method and stability analysis.
S
SunView 深度解读
该分频控制技术对阳光电源ST系列储能变流器和SG系列光伏逆变器具有重要应用价值。三电平飞跨电容拓扑的有源功率解耦特性可直接应用于单相储能PCS,无需额外直流侧大电容即可抑制二倍频纹波,提升功率密度和系统寿命。所提出的分频控制策略将直流与交流分量解耦设计,为阳光电源三电平拓扑控制算法优化提供新思路,可改善PowerTitan储能系统的母线电压稳定性和输入电流质量。建立的单输入单输出导纳模型为非线性周期时变系统稳定性分析提供理论工具,可应用于车载OBC等单相功率变换场景,增强产品在宽工况下的鲁棒性和可靠性。