A Machine Learning Approach to Record Linkage of Chinese Historical Data

Yue Yu, The Hong Kong University of Science and Technology
Cameron Campbell, The Hong Kong University of Science and Technology

We introduce a generic machine learning-based pipeline for nominative linkage of records within and across Chinese historical datasets. The pipeline addresses key challenges, including character variations, incomplete data, and scalability issues specific to historical datasets in which names and other attributes are recorded with Chinese characters, not just for China, but potentially for Korea, Japan and Vietnam. Techniques developed for attributes recorded in phonetic alphabets are limited for Chinese characters not only because homonyms are common, but characters that are similar in appearance to be mistaken for each other may sound different. Our approach integrates stroke-based character embeddings for efficient blocking, supervised classification with active learning for record matching, and graph-based clustering for final linkage. We demonstrate the effectiveness of this pipeline using the career records of officials in the China Government Employee Database-Qing Jinshenlu (CGED-Q JSL) as a test case. We achieve improved linkage quality compared to standard probabilistic methods, with longer linked sequences of career records and fewer aberrant transitions. To validate the generalizability, we also successfully apply the pipeline to another database and a cross-database linkage task. By minimizing the need for manual tuning, our pipeline offers a more accessible and effective solution for Chinese historical data linkage.

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 Presented in Session 195. Linking and Data Quality