JOURNAL ARTICLE

LearnAFE: Circuit-Algorithm Co-Design Framework for Learnable Audio Analog Front-End

Jinhai HuZhongyi ZhangCong Sheng LeowWang Ling GohYuan Gao

Year: 2025 Journal:   IEEE Transactions on Circuits and Systems I Regular Papers Vol: 72 (12)Pages: 7623-7633   Publisher: Institute of Electrical and Electronics Engineers

Abstract

This paper presents a circuit-algorithm co-design framework for learnable analog front-end (AFE) in audio signal classification. Designing AFE and backend classifiers separately is a common practice but non-ideal, as shown in this paper. Instead, this paper proposes a joint optimization of the backend classifier with the AFE's transfer function to achieve system-level optimum. More specifically, the transfer function parameters of an analog bandpass filter (BPF) bank are tuned in a signal-to-noise ratio (SNR)-aware training loop for the classifier. Using a co-design loss function LBPF, this work shows superior optimization of both the filter bank and the classifier. Implemented in open-source SKY130 130nm CMOS process, the optimized design achieved 90.5%-94.2% accuracy for 10-keyword classification task across a wide range of input signal SNR from 5 dB to 20 dB, with only 22k classifier parameters. Compared to conventional approach, the proposed audio AFE achieves 8.7% and 12.9% reduction in power and capacitor area respectively.

Keywords:
Front and back ends Analog front-end Computer science Electronic engineering Mixed-signal integrated circuit Circuit design Audio electronics Electrical engineering Audio signal processing Algorithm Electronic circuit Computer hardware Engineering Audio signal Digital signal processing CMOS

Metrics

1
Cited By
5.33
FWCI (Field Weighted Citation Impact)
0
Refs
0.87
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Speech and Audio Processing
Physical Sciences →  Computer Science →  Signal Processing
Music and Audio Processing
Physical Sciences →  Computer Science →  Signal Processing
Music Technology and Sound Studies
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition

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