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Code Generation for Quantized-State System (QSS) Simulation
Mehrdad Niknami

Citation
Mehrdad Niknami. "Code Generation for Quantized-State System (QSS) Simulation". Talk or presentation, 16, October, 2015; Poster presented at the Eleventh Biennial Ptolemy Miniconference, Berkeley.

Abstract
We present recent work on the quantized-state system (QSS) simulation methods and the semantics of QSS integrators and quantizers, including the improved semantics of instantaneous derivative propagation within the discrete-event (DE) model, taking into account sparsity properties of the system.

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Citation formats  
  • HTML
    Mehrdad Niknami. <a
    href="http://chess.eecs.berkeley.edu/pubs/1137.html"><i>Code
    Generation for Quantized-State System (QSS)
    Simulation</i></a>, Talk or presentation,  16,
    October, 2015; Poster presented at the <a
    href="http://ptolemy.eecs.berkeley.edu/conferences/15/"
    >Eleventh Biennial Ptolemy Miniconference</a>,
    Berkeley.
  • Plain text
    Mehrdad Niknami. "Code Generation for Quantized-State
    System (QSS) Simulation". Talk or presentation,  16,
    October, 2015; Poster presented at the <a
    href="http://ptolemy.eecs.berkeley.edu/conferences/15/"
    >Eleventh Biennial Ptolemy Miniconference</a>,
    Berkeley.
  • BibTeX
    @presentation{Niknami15_CodeGenerationForQuantizedStateSystemQSSSimulation,
        author = {Mehrdad Niknami},
        title = {Code Generation for Quantized-State System (QSS)
                  Simulation},
        day = {16},
        month = {October},
        year = {2015},
        note = {Poster presented at the <a
                  href="http://ptolemy.eecs.berkeley.edu/conferences/15/"
                  >Eleventh Biennial Ptolemy Miniconference</a>,
                  Berkeley.},
        abstract = {We present recent work on the quantized-state
                  system (QSS) simulation methods and the semantics
                  of QSS integrators and quantizers, including the
                  improved semantics of instantaneous derivative
                  propagation within the discrete-event (DE) model,
                  taking into account sparsity properties of the
                  system.},
        URL = {http://chess.eecs.berkeley.edu/pubs/1137.html}
    }
    

Posted by Mehrdad Niknami on 19 Oct 2015.
Groups: ptolemy
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