Title :
Signal transition graph decomposition: internal communication for speed independent circuit implementation
Author :
Wist, D. ; Schaefer, M. ; Vogler, Walter ; Wollowski, R.
Author_Institution :
Hasso-Plattner-Inst., Univ. of Potsdam, Potsdam, Germany
fDate :
11/1/2011 12:00:00 AM
Abstract :
Logic synthesis of speed independent circuits based on signal transition graph (STG) decomposition is a promising approach to tackle complexity problems like state-space explosion. Unfortunately, decomposition can result in components that in isolation have irreducible complete state coding conflicts. In earlier work, the authors showed how to resolve such conflicts by introducing internal communication between components, but only for very restricted specification structures. Here, they improve their former work by presenting algorithms for identifying delay transitions and inserting gyroscopes for specifications having a much more general structure. Thus, the authors are now able to synthesise controllers from real-life specifications. For all algorithms, they present correctness proofs and show their successful application to benchmarks, including very complex STGs arising in the context of control resynthesis.
Keywords :
Petri nets; asynchronous circuits; control system synthesis; gyroscopes; state-space methods; complex STG; control resynthesis; delay transitions; gyroscopes; internal communication; real-life specification; signal transition graph decomposition; speed independent circuit implementation; state-space explosion;
Journal_Title :
Computers & Digital Techniques, IET
DOI :
10.1049/iet-cdt.2010.0162