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Cost Scales with Change, Not Corpus Size: Incrementally Maintaining an Evolving Semantic Substrate

Authors

Do you know Yusuke Takahashi?You can claim authorship or link another user.Do you know Kyle Wild?You can claim authorship or link another user.Do you know Asako Uraki?You can claim authorship or link another user.

Abstract

Retrieval-augmented and agentic question-answering systems increasingly re-derive the meaning of a corpus at query time. Put plainly, instead of re-deriving what a corpus means on every question, the work is done once when a document arrives and is thereafter merely consulted -- a compiler, not an interpreter, of meaning. An alternative is to compile that meaning once, at ingest time, into a compact, queryable semantic substrate and maintain it as the corpus evolves. The central objection is maintenance cost: rebuilding a truncated singular value decomposition (SVD) on every change appears prohibitive, and a change of embedding model seems to force a full re-embedding. We argue and show empirically that maintenance cost scales with the amount of change, not corpus size. On a controlled synthetic pilot (dimension 256, rank 32, a corpus grown from 3,000 to 9,000 documents over 50 update events), incremental low-rank updates were 33.7 times cheaper per update than full re-SVD and 23.8 times cheaper cumulatively, while the incremental subspace tracked the full recomputation to within floating-point precision (maximum principal-angle drift below 1e-11 degrees; recall@10 = 1.0). An orthogonal Procrustes virtual axis update recovered 0.95 mean cosine to truly re-embedded vectors by re-embedding only about 10 percent of the corpus. The results support maintaining, rather than repeatedly reconstructing, a semantic substrate.

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Publication notes

Author note
5 pages, 5 figures, 1 table. Accepted and presented at the 2026 International Electronics Symposium (IES), Yogyakarta, Indonesia, August 1-3, 2026 (IEEE technically co-sponsored). Authors' accepted version