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Low Latency Implementations of CNN for Resource-Constrained IoT Devices

Authors
Mujtaba, AhmedLee, Wai-KongHwang, Seong Oun
Issue Date
Dec-2022
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Convolutional neural networks; Internet-of-Things; microcontrollers; tiny ML
Citation
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, v.69, no.12, pp.5124 - 5128
Journal Title
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS
Volume
69
Number
12
Start Page
5124
End Page
5128
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/87089
DOI
10.1109/TCSII.2022.3205029
ISSN
1549-7747
Abstract
Convolutional Neural Network (CNN) inference on a resource-constrained Internet-of-Things (IoT) device (i.e., ARM Cortex-M microcontroller) requires careful optimization to reduce the timing overhead. We propose two novel techniques to improve the computational efficiency of CNNs by targeting low-cost microcontrollers. Our techniques utilize on-chip memory and minimize redundant operations, yielding low-latency inference results on complex quantized models such as MobileNetV1. On the ImageNet dataset for per-layer quantization, we reduce inference latency and Multiply-and-Accumulate (MAC) per cycle by 22.4% and 22.9%, respectively, compared to the state-of-theart mixed-precision CMix-NN library. On the CIFAR-10 dataset for per-channel quantization, we reduce inference latency and MAC per cycle by 31.7% and 31.3%, respectively. The achieved low-latency inference results can improve the user experience and save power budget in resource-constrained IoT devices.
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Hwang, Seong Oun
College of IT Convergence (컴퓨터공학부(컴퓨터공학전공))
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