何永胜, 袁雅楠, 杨帆, 鲁宗相, 张施令. 考虑时空非均匀的特高压阀侧套管数字孪生模型降阶算法研究[J]. 电网技术, 2025, 49(5): 2186-2195. DOI: 10.13335/j.1000-3673.pst.2024.0368
引用本文: 何永胜, 袁雅楠, 杨帆, 鲁宗相, 张施令. 考虑时空非均匀的特高压阀侧套管数字孪生模型降阶算法研究[J]. 电网技术, 2025, 49(5): 2186-2195. DOI: 10.13335/j.1000-3673.pst.2024.0368
HE Yongsheng, YUAN Yanan, YANG Fan, LU Zongxiang, ZHANG Shiling. Research on the Order Reduction Algorithm of Digital Twin Model for Ultra-high Voltage Valve-side Bushing Considering Spatial and Temporal Non-uniformity[J]. Power System Technology, 2025, 49(5): 2186-2195. DOI: 10.13335/j.1000-3673.pst.2024.0368
Citation: HE Yongsheng, YUAN Yanan, YANG Fan, LU Zongxiang, ZHANG Shiling. Research on the Order Reduction Algorithm of Digital Twin Model for Ultra-high Voltage Valve-side Bushing Considering Spatial and Temporal Non-uniformity[J]. Power System Technology, 2025, 49(5): 2186-2195. DOI: 10.13335/j.1000-3673.pst.2024.0368

考虑时空非均匀的特高压阀侧套管数字孪生模型降阶算法研究

Research on the Order Reduction Algorithm of Digital Twin Model for Ultra-high Voltage Valve-side Bushing Considering Spatial and Temporal Non-uniformity

  • 摘要: 直流特高压输电系统是我国骨干网架的重要组成部分,换流变压器阀侧套管是特高压直流系统的关键薄弱环节,应用数字孪生技术对阀侧套管进行监测意义重大。然而阀侧套管内部狭长复杂结构和时空非线性特性带来数字孪生模型计算量巨大,亟需研究高效的降阶算法。该文提出了适应于特高压阀侧套管的考虑空间、时间非均匀的本征正交分解降阶算法,算法很好地平衡了准确性和时效性,对于其重点研究区域误差范围小于0.01%,非重点研究区域结果能反映其物理量大致变化的情况下,降阶算法耗时仅为全阶仿真模型的5%左右。该研究为特高压阀侧套管数字孪生模型构建提供了重要基础。

     

    Abstract: DC ultra-high voltage is an important backbone network of China's power grid, and the valve-side bushing of the converter transformer is a key weak link in the ultra-high voltage DC system. The application of digital twin technology to monitor the valve-side bushing is significant. This paper systematically studies the core twin model reduction algorithm in the digital twinning process of valve-side bushing. It proposes a proper orthogonal decomposition reduction algorithm that considers spatial and temporal non-uniformity for ultra-high voltage valve-side bushing. The algorithm balances accuracy and effectiveness well. When the error range of the key study area is less than 0.01%, and the results of the non-key study area can reflect the approximate change of its physical quantity, the time of the reduced order algorithm is only about 5% of that of the full-order simulation model. This study provides an important foundation for constructing a digital twin model for the ultra-high voltage valve-side bushing.

     

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