混合SiC/Si有源钳位三电平光储功率模块电热优化设计
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作者:
作者单位:

重庆大学 输变电装备技术全国重点实验室,重庆 400044

作者简介:

赵留青(2000—),女,硕士研究生,主要从事新型电力电子器件封装集成与应用研究,(E-mail) zlqliuqing@163.com。

通讯作者:

牛富丽,女,讲师,(E-mail) niufuli@cqu.edu.cn。

中图分类号:

TM464

基金项目:

国家自然科学基金资助项目(52177169);重庆市杰出青年科学基金资助项目(CSTB2024NSCQ-JQX0016);重庆市研究生科研创新训练资助项目(CYB240023)。


Electro-thermal optimization design of a hybrid SiC/Si power module with active clamped three-level topology for photovoltaic and energy storage applications
Author:
Affiliation:

State Key Laboratory of Power Transmission Equipment Technology, Chongqing University, Chongqing 400044, P. R. China

Fund Project:

Supported by the National Natural Science Foundation of China (52177169), Natural Science Foundation of Chongqing (CSTB2024NSCQ-JQX0016), and the Projects of Chongqing Postgraduate Scientific Research and Innovation Training Program (CYB240023).

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    摘要:

    得益于高效率优势,混合SiC/Si有源钳位(active neutral point clamped,ANPC)三电平电路拓扑在光储发电系统中应用广泛。但传统混合SiC/Si功率模块中,Si器件的使用限制了效率提升,SiC器件引入后又可能导致热分布不均、电压过冲及振荡等问题。提出了一种综合设计方法,结合功率器件损耗均衡与功率模块布局寄生电感优化,以提高混合SiC/Si ANPC电路拓扑的功率模块性能。建立了功率模块损耗模型,并进行热性能优化,降低结温与芯片温差;构建了寄生电感模型,通过优化设计减小寄生电感;研制了基于ANPC拓扑的混合SiC/Si功率模块,并开展电热性能测试。实验结果验证了功率模块在损耗、寄生电感及热分布方面的显著优势。

    Abstract:

    The active neutral point clamped (ANPC) three-level topology with hybrid SiC and Si power module is widely used in photovoltaic and energy storage systems due to its high efficiency. However, in conventional hybrid SiC/Si power modules, the use of Si devices constrains efficiency improvements, while the introduction of SiC devices can lead to challenges such as uneven heat distribution, voltage overshoot, and oscillation. To address these issues, this paper proposes a comprehensive design method that incorporates both loss equalization of power devices and parasitic inductance optimization of the module layout to improve the performance of hybrid SiC/Si ANPC modules. First, a loss model of the power module is established, and thermal performance is optimized to reduce junction temperatures and chip-to-chip temperature differences. Second, a parasitic inductance model is constructed, and inductance is minimized through optimized layout design. Finally, a hybrid SiC/Si power module based on the ANPC topology is developed and experimentally evaluated. The results demonstrate significant improvements in terms of power loss, parasitic inductance, and thermal distribution, verifying the effectiveness of the proposed electro-thermal optimization design.

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引用本文

赵留青,梁钰茜,牛富丽,邹铭锐,曾正.混合SiC/Si有源钳位三电平光储功率模块电热优化设计[J].重庆大学学报,2025,48(11):25-40.

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  • 收稿日期:2024-12-25
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  • 在线发布日期: 2025-12-15
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