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面 向 民 机 跨 域 故 障 诊 断 的 多 源 域 层 级交 互 图 融 合 原 型 网 络

Translated title of the contribution: Multi-source domain hierarchical-interactive graph fusion prototype network for civil aircraft cross-domain fault diagnosis
  • Northwestern Polytechnical University Xian

Research output: Contribution to journalArticlepeer-review

Abstract

Extracting diverse and correlated transferable knowledge from multiple domains for cross-domain diagnosis in unlabeled civil aircraft target scenarios is a critical and pressing need. Graph-based multi-source domain adaptation is an effective solution to this problem. However, existing methods are inaccurate in extracting multi-domain features and have insufficient depth of feature interaction, which hinders the performance of cross-domain fault diagnosis. To address these limitations, a multi-source domain hierarchical-interactive graph fusion prototype network (MDHGFPN) is proposed for civil aircraft cross-domain fault diagnosis. A de-redundancy global prototype network is built to iteratively refine the global prototype features from both spatial and channel dimensions, ensuring accurate multi-domain prototype embedding to guarantee the construction of high-quality knowledge graphs. A hierarchical-interactive graph fusion strategy is constructed to model a wider range of neighborhoods without restriction. This strategy fully exploits multi-domain knowledge interactions,adaptively fusing neighborhood information most beneficial to the target node, thereby achieving effective cross-domain fault diagnosis. Experimental cases show that MDHGFPN is effective and superior in cross-domain fault diagnosis tasks for civil aircraft in unlabeled scenarios.

Translated title of the contributionMulti-source domain hierarchical-interactive graph fusion prototype network for civil aircraft cross-domain fault diagnosis
Original languageChinese (Traditional)
Pages (from-to)1606-1616
Number of pages11
JournalZhendong Gongcheng Xuebao/Journal of Vibration Engineering
Volume39
Issue number6
DOIs
StatePublished - Jun 2026

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