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DC25_PAPER_Track10_ParameterExtractionForBehaviorModel_Zhang.pdf

上传人: S** 编号:1240790 2026-05-16 21页 1.61MB

1、 Information Classification:General A Parameter Extraction Method for Multi-phase Buck Converters Based on Nonlinear Least Square Method Hanyu Zhang,Missouri University of Science and Technology hzc5zmst.edu Junho Joo,Missouri University of Science and Technology joojumst.edu Wenchang Huang,Missouri

2、 University of Science and Technology wh3vwmst.edu Information Classification:General Hanfeng Wang,Google LLC Wei Shen,Google LLC Zhigang Liang,Google LLC Lihui Cao,Google LLC Seungtaek Jeong,Google LLC Chulsoon Hwang,Missouri University of Science and Technology hwangcmst.edu Information Classifica

3、tion:General Abstract Power converter simulation models are crucial for power integrity simulation in the low-frequency range.In this regard,a behavioral model of multi-phase buck converter that accurately captures non-linear behaviors was proposed in the past.However,more than 20 parameters are nee

4、ded to model practical multi-phase Buck converters with phase add/drop and PWM/PFM transition features,and determining those parameters is not trivial.In this paper,an automatic parameter extraction method was proposed.The proposed method constructs cost functions that quantify the difference betwee

5、n simulated and measured output voltage waveforms.Using the nonlinear least squares(LSQ)method,the algorithm iteratively minimizes the cost function to find the best estimates of the unknown parameters.SPICE simulations are conducted in each iteration to update the cost function.The proposed method

6、was implemented in a Python program and validated on a practical three-phase buck converter.This program successfully extracted the correct parameters without the users intervention.The SPICE model matches measurement results well at various load conditions with the extracted parameters.This method

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1. **研究目的**:提出一种基于非线性最小二乘法(LSQ)的多相Buck变换器参数自动提取方法,解决传统方法需手动调整20余个参数且耗时的问题。 2. **核心方法**: - 构建成本函数量化仿真与实测输出电压波形差异,通过LSQ迭代优化参数。 - PWM参数(如单/多相增益)和PFM参数(如电压阈值)分开提取,分别采用时域波形误差和特征值(峰值、谷值、上升斜率)作为成本函数。 3. **实验验证**:在三相Buck变换器上实现,Python程序自动提取参数,SPICE仿真与实测波形匹配度高(如模式转换瞬态响应误差小),仅需示波器测量波形。 4. **优势**:无需用户干预,适用于早期设计阶段,提升电源完整性(PI)仿真准确性。
**VRM参数提取新法?** **如何自动提取参数?** **多相 buck 建模难题?**
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