Dynamic Multi-bit Parallel Computing Method Based on Reconfigurable Structure
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-0801-7_20
Reference18 articles.
1. Lu, Y., Liu, L., Zhu, J., et al.: Architecture, challenges and applications of dynamic reconfigurable computing. J. Semicond. 41(2), 4–13 (2020)
2. Chiu, J.-C., Yan, Z.-Y., Liu, Y.-C.: Design and implementation of the CNN accelator based on multi-streaming SIMD mechanisms. In: Hsieh, S.-Y., Hung, L.-J., Klasing, R., Lee, C.-W., Peng, S.-L. (eds.) New Trends in Computer Technologies and Applications: 25th International Computer Symposium, ICS 2022, Taoyuan, Taiwan, December 15–17, 2022, Proceedings, pp. 460–473. Springer Nature Singapore, Singapore (2022). https://doi.org/10.1007/978-981-19-9582-8_40
3. Sharma, H., Park, J., Suda, N.: Bit Fusion: Bit-Level Dynamically Composable Architecture for Accelerating Deep Neural Networks. In: ACM/IEEE 45th annual international symposium on computer architecture (ISCA). IEEE 2018, 764–775 (2018)
4. Moss, D.J., Krishnan, S., Nurvitadhi, E., et al.: A customizable matrix multiplication framework for the intel harpv2 xeon+fpga platform: a deep learning case study. In: 2018 ACM/SIGDA International Symposium on Field-Programmable Gate Arrays. ACM, pp. 107–116 (2018)
5. Faraone, J. Kumm, M., Hardieck, M., et al.: AddNet: deep neural networks using fpga-optimized multipliers. IEEE Trans. Very Large Scale Integr. (VLSI) Syst. 28(1), 115–128 (2020)
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