Title :
A probabilistic-based design methodology for nanoscale computation
Author :
Bahar, R.I. ; Mundy, J. ; Jie Chen
Author_Institution :
Div. of Eng., Brown Univ., Providence, RI, USA
Abstract :
As current silicon-based techniques fast approach their practical limits, the investigation of nanoscale electronics, devices and system architectures becomes a central research priority. It is expected that nanoarchitectures will confront devices and interconnections with high inherent defect rates, which motivates the search for new architectural paradigms. In this paper, we propose a probabilistic-based design methodology for designing nanoscale computer architectures based on Markov Random Fields (MRF). The MRF can express arbitrary logic circuits and logic operation is achieved by maximizing the probability of state configurations in the logic network. Maximizing state probability is equivalent to minimizing a form of energy that depends on neighboring nodes in the network. Once we develop a library of elementary logic components, we can link them together to build desired architectures based on the belief propagation algorithm. Belief propagation is a way of organizing the global computation of marginal belief in terms of smaller local computations. We will illustrate the proposed design methodology with some elementary logic examples.
Keywords :
Markov processes; belief networks; logic circuits; minimisation of switching nets; nanoelectronics; probabilistic logic; probability; state assignment; MRF; Markov random fields; Si; arbitrary logic circuits; belief propagation algorithm; elementary logic components; logic minimisation; logic network; logic operation; nanoscale computation; nanoscale computer architectures; nanoscale devices; nanoscale electronics; probabilistic based design; silicon based techniques; state probability maximization; Belief propagation; Computer architecture; Design methodology; Integrated circuit interconnections; Libraries; Logic circuits; Logic devices; Markov random fields; Nanoscale devices; Organizing;
Conference_Titel :
Computer Aided Design, 2003. ICCAD-2003. International Conference on
Conference_Location :
San Jose, CA, USA
Print_ISBN :
1-58113-762-1
DOI :
10.1109/ICCAD.2003.159727