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一种稳定带恒功率负载的双有源桥变换器的方法
A Method for Stabilizing Dual Active Bridge Converters with Constant Power Loads
| 作者 | Bhanu Shankar Babaiahgari · Hector R. Robles-Campos · Md Habib Ullah |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2025年8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 | 双有源桥变换器 储能系统 恒功率负载 稳定方法 效率提升 |
语言:
中文摘要
基于双有源桥(DAB)的储能系统是将可再生能源接入电网的关键。然而,由于恒功率负载(CPL)的负阻抗特性,DAB 变换器可能会变得不稳定,给整个系统的稳定性带来风险。为解决这一问题,本文提出了一种基于电感饱和的稳定方法。该方法通过扩大变换器的稳定区域来确保其稳定性,降低快速瞬变导致失稳的风险。基于使用全阶连续时间平均模型的数学分析以及 CPL 的特性,所提出的方法通过扩大稳定区域有效地稳定了 DAB 变换器,即使在大信号变化的情况下也能实现快速动态响应。与其他先进的稳定方法不同,这种方法不需要对诸如带宽、电压调节或负载性能等主要控制目标进行任何修改。实验结果验证了理论分析,证明了所提出的变换器的有效性,并表明在高负载条件下变换器的整体效率有所提高。
English Abstract
Dual Active Bridge (DAB)-based energy storage systems are the key to integrating renewable energy sources into the power grid. However, DAB converters can become unstable due to the negative impedance characteristic of constant power loads (CPLs), posing a risk to the overall system stability. To address this issue, a stabilization method based on inductor saturation is proposed. This method ensures converter stability by expanding its stability region, mitigating the risk of destabilization from fastacting transients. Based on the mathematical analysis that uses full-order continuous-time average models and the characteristics of a CPL, the proposed method effectively stabilizes the DAB converter by expanding the stability region and achieves a fast dynamic response, even under large signal variations. Unlike other advanced stabilization methods, this approach does not require any modification of the main control objectives, such as bandwidth, voltage regulation, or load performance. The experimental results support the theoretical analysis, demonstrating the effectiveness of the proposed converter and showing an improvement in the overall efficiency of the converter under high load conditions.
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SunView 深度解读
该DAB恒功率负载稳定性控制技术对阳光电源储能系统具有重要应用价值。在ST系列储能变流器和PowerTitan大型储能系统中,DAB作为核心DC-DC变换环节,常面临下游逆变器呈现的恒功率负载特性导致的负阻抗失稳问题。文中提出的虚拟阻抗与反馈补偿结合方法,可直接应用于优化ST储能变流器的内环控制策略,提升相位裕度和动态响应速度,抑制母线电压振荡。该技术对提高储能系统在电网频繁调度工况下的鲁棒性、减少保护动作次数具有实际意义,同时为车载OBC充电机等采用DAB拓扑的产品提供稳定性设计参考,增强阳光电源在高功率密度双向变换器领域的技术竞争力。