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doc/tinytalk/tinytalk.tex
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doc/tinytalk/tinytalk.tex
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%% Encoding: ISO8859-1 %%
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%% LaTeX-Beamer template for KIT design
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%% by Erik Burger, Christian Hammer
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%%
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%% modified by Christian Henrich and Matthias Gabel for IKS/ITI
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%%
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%% version 1.3
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%%
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%% mostly compatible to KIT corporate design v1.2
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%% http://www.uni-karlsruhe.de/download/uka/Gestaltungsrichtlinien_komplett.pdf
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\documentclass[18pt,aspectratio=169]{beamer}
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\usetheme{kit}
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\usepackage{comment}
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\usepackage{pdfpages}
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% if a custom picture is to be used on the title page, copy it into the 'logos'
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% directory, in the line below, replace 'mypicture' with the
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% filename (without extension) and uncomment the line
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\renewcommand{\titleimage}{collagen}
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% (picture proportions: 63 : 20, *.eps format if you use latex+dvips+ps2pdf,
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% *.jpg/*.png/*.pdf if you use pdflatex)
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% if you want to see BibTeX keys in the references view instead of the symbol,
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% uncomment the following line
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% \usebibitemtemplate{\insertbiblabel}
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% uncomment the following line if you want to hide the navigation symbols
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%\beamertemplatenavigationsymbolsempty
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% the presentation starts here
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\title[An ECM Model for Cells In Silico]{An ECM Model for Cells in Silico}
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% \subtitle{}
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\author{Paul Brinkmeier}
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\institute[SCC]{Steinbuch Centre for Computing} % Deutsch
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%\institute[ITI]{Department of Informatics, Institute of Theoretical Informatics} % Englisch
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\begin{document}
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\selectlanguage{english} % Deutsch
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% \selectlanguage{ngerman} % Englisch
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%title page
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\begin{frame}
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\titlepage{}
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\end{frame}
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\include{vortrag}
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\begin{comment}
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\section{References}
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\begin{frame}
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\frametitle{References}
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\bibliography{references}
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\bibliographystyle{plain} %does not render "url" fields...
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% \bibliographystyle{IEEEtran} %does render "url" fields, requires "_"s and "#"s to be escaped, e.g. "\_".
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\end{frame}
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\end{comment}
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\section{End}
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\begin{frame}
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\begin{columns}
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\column{0.45\textwidth}
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\includegraphics[page=2,width=0.9\textwidth]{tinytalk2}
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\column{0.45\textwidth}
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\includegraphics[page=3,width=0.9\textwidth]{tinytalk2}
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\end{columns}
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\vfill
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\begin{columns}
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\column{0.45\textwidth}
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\includegraphics[page=7,width=0.9\textwidth]{tinytalk2}
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\column{0.45\textwidth}
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\includegraphics[page=8,width=0.9\textwidth]{tinytalk2}
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\end{columns}
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\end{frame}
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\end{document}
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@ -60,15 +60,17 @@ Two main requirements:
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\end{itemize}
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\end{itemize}
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\end{frame}
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\end{frame}
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\vfill
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\section{Methods}
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\section{Methods}
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\begin{frame}{Lattice Boltzmann Method}
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\begin{frame}{Lattice Boltzmann Method}
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\begin{figure}
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\begin{figure}
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\includegraphics[width=0.8\textwidth]{lbm.png}
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\includegraphics[width=0.6\textwidth]{lbm.png}
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\end{figure}
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\end{figure}
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\[
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f_i(\mathbf{x} + \mathbf{c}_i, t + 1) = f_i(\mathbf{x}, t) - \frac{1}{\tau} (f_i(\mathbf{x}, t) - f_i^\text{eq}(\mathbf{x}, t))
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\]
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\begin{itemize}
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\begin{itemize}
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\item Discretized particle velocities per lattice site
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\item Discretized particle velocities per lattice site
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\item Update Step: Streaming + Collision
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\item Update Step: Streaming + Collision
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@ -77,34 +79,41 @@ Two main requirements:
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\end{frame}
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\end{frame}
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\begin{frame}{Elastic Lattice Model}
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\begin{frame}{Elastic Lattice Model}
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\begin{columns}
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\column{0.35\textwidth}
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\begin{figure}
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\begin{figure}
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\includegraphics[width=0.32\textwidth]{elm.png}
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\includegraphics[width=\textwidth]{elm.png}
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\end{figure}
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\end{figure}
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\column{0.65\textwidth}
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\[
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\mathbf{F}_{ij} = \mathbf{r}_{ij} K_{ij} (\mathbf{u}_{ij} \cdot \mathbf{x}_{ij}) + \frac{c \mathbf{u}_{ij}}{|\mathbf{x}_{ij}|^2} + \eta \mathbf{v}_{ij}
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\]
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\begin{itemize}
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\begin{itemize}
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\item A square lattice based discrete particle method
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\item A square lattice based discrete particle method
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\item Each lattice site represents a particle
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\item Each lattice site represents a particle
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\item Particles are connected to neighbors by springs
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\item Particles are connected to neighbors by springs
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\end{itemize}
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\end{itemize}
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\end{columns}
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\end{frame}
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\end{frame}
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\section{Implementation}
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\begin{frame}{My Approach}
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Two main requirements:
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\begin{frame}{Implementation}
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\begin{itemize}
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\begin{itemize}
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\item Starting point: NAStJA + CiS
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\item Model exhibits viscoelastic properties \checkmark{}
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\item Benchmark different implementations against each other
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\item Model can be implemented as a stencil in NAStJA \checkmark{}
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\begin{itemize}
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\item CPU
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\item Vectorized
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\item GPU
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\end{itemize}
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\end{itemize}
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\item Optimize for
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\vfill
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Challenges:
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\begin{itemize}
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\begin{itemize}
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\item Scaling behavior
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\item How do we integrate the model with the CPM?
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\item Wall clock time
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\item How can it be implemented in NAStJA?
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\item etc.
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\item How do we make it fast?
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\end{itemize}
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\end{itemize}
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\end{itemize}
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\end{frame}
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\end{frame}
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