| name | flowedit-associative-memory-lifelong-pronunciation |
| description | FlowEdit introduces lifelong adaptation for frozen TTS models using Modern Hopfield Networks as content-addressable episodic memory, enabling pronunciation corrections without weight updates. |
| created | 2026-06-20T00:00:00.000Z |
| source | arXiv:2606.20518 |
| authors | Harshit Singh, Ayush Pratap Singh, Nityanand Mathur |
| tags | ["associative-memory","flow-matching","lifelong-learning","pronunciation-adaptation","modern-hopfield","neuroscience"] |
| category | ai_collection |
FlowEdit: Associative Memory for Lifelong Pronunciation Adaptation in Flow-Matching TTS
Overview
FlowEdit introduces a lifelong adaptation framework for frozen flow-matching text-to-speech (TTS) systems using Modern Hopfield Networks as content-addressable episodic memory for pronunciation corrections.
Core Methodology
Modern Hopfield Network Memory
- Content-addressable storage for corrections
- Fuzzy morphological matching via soft attention
- Fast convergence, high capacity, noise tolerance
Latent Conditioning Edits
- Token-level perturbations in text embedding space
- Learned edits rather than weight updates
- Gradient-based optimization with supervised feedback
Lifelong Learning Paradigm
- Continuous incremental corrections
- No catastrophic forgetting
- Similarity-gated retrieval
Neuroscience Foundations
Hopfield Network Analogy:
- Hippocampal pattern completion modeling
- Content-addressable recall mechanisms
- Energy-based memory dynamics
Episodic Memory Formation:
- Single-trial learning of corrections
- Cue-dependent retrieval
- Contextual binding
Experimental Results
- 312 multilingual proper nouns across 18 language families
- Phoneme Error Rate reduction: 92.7%
- Correction time: ~15 seconds
Trigger Words
flow-matching, associative memory, modern hopfield, lifelong learning, episodic memory, hippocampal, pattern completion
Related Concepts
- Modern Hopfield Networks
- Flow-matching generative models
- Episodic memory formation
- Content-addressable memory