Q-Learning-Based Voltage-Swing Tuning and Compensation for 2.5-D Memory-Logic Integration. Xu, D., Yu, N., Huang, H., Dinakarrao, S. M. P., & Yu, H. IEEE Des. Test, 35(2):91-99, 2018.
Q-Learning-Based Voltage-Swing Tuning and Compensation for 2.5-D Memory-Logic Integration. [link]Link  Q-Learning-Based Voltage-Swing Tuning and Compensation for 2.5-D Memory-Logic Integration. [link]Paper  bibtex   
@article{journals/dt/XuYHDY18,
  added-at = {2020-03-13T00:00:00.000+0100},
  author = {Xu, Dongjun and Yu, Ningmei and Huang, Hantao and Dinakarrao, Sai Manoj Pudukotai and Yu, Hao},
  biburl = {https://www.bibsonomy.org/bibtex/24cfbd767c43f398fcf4567c01c73aa8f/dblp},
  ee = {https://doi.org/10.1109/MDAT.2017.2764075},
  interhash = {dc2f06ad2ea2a3491d86105fe467a6a1},
  intrahash = {4cfbd767c43f398fcf4567c01c73aa8f},
  journal = {IEEE Des. Test},
  keywords = {dblp},
  number = 2,
  pages = {91-99},
  timestamp = {2020-03-14T12:05:40.000+0100},
  title = {Q-Learning-Based Voltage-Swing Tuning and Compensation for 2.5-D Memory-Logic Integration.},
  url = {http://dblp.uni-trier.de/db/journals/dt/dt35.html#XuYHDY18},
  volume = 35,
  year = 2018
}

Downloads: 0