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Home / Proceedings / Proceedings of the AAAI Conference on Artificial Intelligence, 35 / No. 10: AAAI-21 Technical Tracks 10

Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision

February 1, 2023

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Authors

Xingchao Liu

University of Texas at Austin


Mao Ye

University of Texas at Austin


Dengyong Zhou

Google Brain


Qiang Liu

University of Texas at Austin


DOI:

10.1609/aaai.v35i10.17054


Abstract:

We consider the post-training quantization problem, which discretizes the weights of pre-trained deep neural networks without re-training the model. We propose multipoint quantization, a quantization method that approximates a full-precision weight vector using a linear combination of multiple vectors of low-bit numbers; this is in contrast to typical quantization methods that approximate each weight using a single low precision number. Computationally, we construct the multipoint quantization with an efficient greedy selection procedure, and adaptively decides the number of low precision points on each quantized weight vector based on the error of its output. This allows us to achieve higher precision levels for important weights that greatly influence the outputs, yielding an ``effect of mixed precision'' but without physical mixed precision implementations (which requires specialized hardware accelerators). Empirically, our method can be implemented by common operands, bringing almost no memory and computation overhead. We show that our method outperforms a range of state-of-the-art methods on ImageNet classification and it can be generalized to more challenging tasks like PASCAL VOC object detection.

Topics: AAAI

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HOW TO CITE:

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision Proceedings of the AAAI Conference on Artificial Intelligence (2021) 8697-8705.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision AAAI 2021, 8697-8705.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu (2021). Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision. Proceedings of the AAAI Conference on Artificial Intelligence, 8697-8705.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu. Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision. Proceedings of the AAAI Conference on Artificial Intelligence 2021 p.8697-8705.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu. 2021. Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision. "Proceedings of the AAAI Conference on Artificial Intelligence". 8697-8705.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu. (2021) "Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision", Proceedings of the AAAI Conference on Artificial Intelligence, p.8697-8705

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu, "Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision", AAAI, p.8697-8705, 2021.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu. "Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision". Proceedings of the AAAI Conference on Artificial Intelligence, 2021, p.8697-8705.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu. "Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision". Proceedings of the AAAI Conference on Artificial Intelligence, (2021): 8697-8705.

Xingchao Liu||Mao Ye||Dengyong Zhou||Qiang Liu. Post-training Quantization with Multiple Points: Mixed Precision without Mixed Precision. AAAI[Internet]. 2021[cited 2023]; 8697-8705.


ISSN: 2374-3468


Published by AAAI Press, Palo Alto, California USA
Copyright 2022, Association for the Advancement of
Artificial Intelligence 1900 Embarcadero Road, Suite
101, Palo Alto, California 94303 All Rights Reserved

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