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储能系统技术 储能系统 DAB ★ 5.0

基于前馈重复控制的DAB变换器扰动抑制方法

Feedforward Repetitive Approach to Disturbance Rejection in DAB Converters for EV Charging

作者 Piyali Pal · Ranjan Kumar Behera · Utkal Ranjan Muduli
期刊 IEEE Transactions on Industrial Electronics
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统 DAB
相关度评分 ★★★★★ 5.0 / 5.0
关键词 单相AC/DC转换器 电动汽车充电 双有源桥转换器 扰动抑制控制 低频纹波
语言:

中文摘要

单相AC/DC变换器因具备双向功率传输、电气隔离、高效率及优良电能质量等优势,广泛应用于电动汽车(EV)充电系统。然而,系统非线性与功率不平衡易引发低频输出纹波,影响充电质量与电池寿命。本文提出一种改进的扰动抑制控制策略,将前馈重复控制与传统扰动观测器并联应用于DAB变换器。通过在重复控制器中引入低通滤波器,在不引入相位延迟的前提下降低高频增益,提升系统稳定性。理论分析深入探讨了系统的稳定性和抗扰性能,为控制器参数整定提供依据。实验基于搭建的DAB样机验证所提方法的有效性,结果表明,相较于传统扰动抑制与PI控制,该方法具有更优的动态响应与低频纹波抑制能力,显著提升了EV充电系统的性能。

English Abstract

Single-phase ac/dc converters are popular in charging electric vehicle (EV) batteries due to their bidirectional power flow, electrical isolation, high efficiency, and benefits of power quality. However, these converters can suffer from low-frequency output ripple caused by system nonlinearities and power discrepancies, which reduces output power quality and battery life. This article proposes a modified disturbance rejection control method that uses a feedforward repetitive approach in parallel with a traditional disturbance observer for dual active bridge (DAB) converters in EV charging. A low-pass filter is incorporated into the repetitive controller to reduce high-frequency gain and ensure system stability without introducing phase delays. Theoretical analyses of stability and disturbance rejection capabilities have been discussed elaborately which offer insights for tuning control parameters. The efficacy of the proposed controller is validated through implementation in a laboratory-built DAB converter prototype. Experimental results demonstrate superior dynamic performance and low-frequency ripple reduction compared with traditional methods such as disturbance rejection control and PI control, highlighting the effectiveness of this repetitive control-based approach in improving EV battery charging systems.
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SunView 深度解读

该前馈重复控制技术对阳光电源车载OBC充电机和充电桩产品线具有直接应用价值。DAB变换器是阳光电源双向充电系统的核心拓扑,文中提出的改进扰动抑制策略可有效解决单相AC/DC系统中二倍频纹波问题,这与阳光电源充电产品面临的低频输出纹波抑制需求高度契合。该方法通过并联前馈重复控制器与扰动观测器,在不增加相位延迟的前提下提升高频稳定性,可直接移植到ST系列储能变流器的双向DC/DC环节,优化电池侧纹波抑制性能,延长电池寿命。建议将该控制算法与阳光电源现有MPPT和功率平衡控制策略融合,形成多层级扰动抑制方案,提升充电系统动态响应速度和电能质量指标。