الملخص

Contrastive vision-language models map visual and textual representations into a shared normalized embedding space, making cosine similarity the natural metric for cross-modal retrieval. A practical challenge arises during model upgrades: independently trained models generally produce incompatible representation spaces, so replacing a deployed model typically requires recomputing embeddings for the entire gallery, which is prohibitively expensive at scale. Orthogonal post-hoc alignment can partially mitigate this problem by mapping new-model queries into the old-model gallery space. However, because independently trained models can differ in fine-grained representation structure, the orthogonal alignment remains approximate, leaving a residual angular discrepancy between the old-model query and the aligned new-model query. We study whether interpolation along the spherical geodesic between these two normalized query representations can improve retrieval without re-indexing the gallery. We characterize when this path contains an interior query direction closer to an idealized retrieval-optimal direction than either endpoint, and connect this characterization to Recall@$K$ through a local margin-based certification result. Experiments across multiple benchmarks and model families show that post-alignment spherical interpolation improves over orthogonal alignment alone, recovering backward-compatibility in most evaluated settings. Consistent with our geometric characterization, per-query oracle analysis shows that retrieval-favorable interior points occur frequently in practice. Code is available at https://github.com/miccunifi/SLERP_backward_compatibility .

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اقتبس هذه المقالة

APA 7

Ricci, S., Biondi, N., & Pernici, F. (2026). Spherical Interpolation for Backward-Compatible Multimodal Representations. https://omanscience.com/ar/articles/spherical-interpolation-for-backward-compatible-multimodal-representations

MLA 9

Ricci, Simone, et al. "Spherical Interpolation for Backward-Compatible Multimodal Representations." https://omanscience.com/ar/articles/spherical-interpolation-for-backward-compatible-multimodal-representations.

شيكاغو (المؤلف–التاريخ)

Ricci, Simone, Niccolò Biondi, and Federico Pernici. 2026. "Spherical Interpolation for Backward-Compatible Multimodal Representations." https://omanscience.com/ar/articles/spherical-interpolation-for-backward-compatible-multimodal-representations.

هارفارد

Ricci, S., Biondi, N. and Pernici, F. (2026) 'Spherical Interpolation for Backward-Compatible Multimodal Representations', Available at: https://omanscience.com/ar/articles/spherical-interpolation-for-backward-compatible-multimodal-representations.

فانكوفر

Ricci S, Biondi N, Pernici F. Spherical Interpolation for Backward-Compatible Multimodal Representations. https://omanscience.com/ar/articles/spherical-interpolation-for-backward-compatible-multimodal-representations

IEEE

S. Ricci, N. Biondi, and F. Pernici, "Spherical Interpolation for Backward-Compatible Multimodal Representations," https://omanscience.com/ar/articles/spherical-interpolation-for-backward-compatible-multimodal-representations.