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  4. Multi-Corner Timing Macro Modeling With Neural Collaborative Filtering From Recommendation Systems Perspective
 
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Multi-Corner Timing Macro Modeling With Neural Collaborative Filtering From Recommendation Systems Perspective

Journal
IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems
Date Issued
2024-01-01
Author(s)
Chang, Kevin Kai Chun
Liu, Guan Ting
Chiang, Chun Yao
Lee, Pei Yu
HUI-RU JIANG  
DOI
10.1109/TCAD.2024.3383350
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/642023
URL
https://api.elsevier.com/content/abstract/scopus_id/85189510423
Abstract
Timing macro modeling has been widely employed to enhance the efficiency and accuracy of parallel and hierarchical timing analysis. However, existing studies primarily focused on generating an accurate and compact timing macro model for single-corner libraries, making it difficult to adapt these approaches to multi-corner situations. This either incurs substantial engineering effort or results in significant performance degradation. To tackle this challenge, we offer a fresh perspective on the timing macro modeling problem by drawing inspiration from recommendation systems and formulating it as a matrix completion task. We propose a neural collaborative filtering-based framework capable of capturing the convoluted relationships between circuit pins and timing corners. This framework enables the precise identification of timing variant regions across different corners. Additionally, we design several training features and implement various training techniques to enhance precision. Experimental results show that our framework reduces model sizes by more than 10% compared to state-of-the-art single-corner approaches, while maintaining competitive timing accuracy and exhibiting significant runtime improvements. Furthermore, when applied to unseen corners, our framework consistently delivers superior performance, demonstrating its potential for use in off-corner chiplets in a heterogeneous integration system.
Subjects
Adaptation models | Analytical models | Integrated circuit modeling | Libraries | matrix completion | Multiple corners | Pins | recommendation systems | Timing | timing macro modeling | Training
Type
journal article

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