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A 2.3nJ/frame Voice Activity Detector based audio front-end for context-aware System-on-Chip applications in 32nm CMOS., , , , , и . CICC, стр. 1-4. IEEE, (2012)DSP technology in industry., и . IEEE Signal Process. Mag., 19 (4): 6-8 (2002)Structural Sparsification for Far-Field Speaker Recognition with Intel® Gna., , , , и . ICASSP, стр. 3037-3041. IEEE, (2020)ISIS: An accelerator for Sphinx speech recognition., , , , и . SASP, стр. 58-61. IEEE Computer Society, (2011)A 2.3 nJ/Frame Voice Activity Detector-Based Audio Front-End for Context-Aware System-On-Chip Applications in 32-nm CMOS., , , , , и . IEEE J. Solid State Circuits, 48 (8): 1963-1969 (2013)Implementation of efficient, low power deep neural networks on next-generation intel client platforms., и . ICASSP, стр. 6590-6591. IEEE, (2017)An End-to-End Neural Network for Image-to-Audio Transformation., , и . ICASSP, стр. 1-5. IEEE, (2023)Activity Recognition and Monitoring Using Multiple Sensors on Different Body Positions., , , и . BSN, стр. 113-116. IEEE Computer Society, (2006)Novel CI-backoff scheme for real-time embedded speech recognition., и . ICASSP, стр. 1614-1617. IEEE, (2010)Compression of end-to-end non-autoregressive image-to-speech system for low-resourced devices., , и . CoRR, (2023)