X-Git-Url: https://bilbo.iut-bm.univ-fcomte.fr/and/gitweb/book_gpu.git/blobdiff_plain/c8b308b236018000b34d6d58d5bdc4cb8313111b..8e13f9e62b8323f091076223183e5436646a87e7:/BookGPU/Chapters/chapter16/ch16.aux?ds=inline diff --git a/BookGPU/Chapters/chapter16/ch16.aux b/BookGPU/Chapters/chapter16/ch16.aux index 19fea95..690208a 100644 --- a/BookGPU/Chapters/chapter16/ch16.aux +++ b/BookGPU/Chapters/chapter16/ch16.aux @@ -4,72 +4,72 @@ \@writefile{toc}{\author{H. Wang}{}} \@writefile{toc}{\author{H. Yu}{}} \@writefile{loa}{\addvspace {10\p@ }} -\@writefile{toc}{\contentsline {chapter}{\numberline {15}GPU-Accelerated Envelope-Following Method}{335}} +\@writefile{toc}{\contentsline {chapter}{\numberline {14}GPU-Accelerated Envelope-Following Method}{299}} \@writefile{lof}{\addvspace {10\p@ }} \@writefile{lot}{\addvspace {10\p@ }} -\@writefile{toc}{\contentsline {section}{\numberline {15.1}Introduction}{335}} -\newlabel{fig:ef1}{{15.1(a)}{337}} -\newlabel{sub@fig:ef1}{{(a)}{337}} -\newlabel{fig:ef2}{{15.1(b)}{337}} -\newlabel{sub@fig:ef2}{{(b)}{337}} -\@writefile{lof}{\contentsline {figure}{\numberline {15.1}{\ignorespaces Transient envelope-following analysis. (Both two figures reflect backward-Euler style envelope-following.)\relax }}{337}} -\@writefile{lof}{\contentsline {subfigure}{\numberline{(a)}{\ignorespaces {Illustration of one envelope skip.}}}{337}} -\@writefile{lof}{\contentsline {subfigure}{\numberline{(b)}{\ignorespaces {The envelope changes in a slow time scale.}}}{337}} -\newlabel{fig:ef_intro}{{15.1}{337}} -\@writefile{toc}{\contentsline {section}{\numberline {15.2}The envelope-following method in a nutshell}{338}} -\newlabel{sec:ef}{{15.2}{338}} -\newlabel{eq:dae}{{15.1}{338}} -\newlabel{eq:Newton}{{15.2}{339}} -\newlabel{eq:A}{{15.3}{339}} -\@writefile{toc}{\contentsline {section}{\numberline {15.3}New parallel envelope-following method}{340}} -\newlabel{sec:gmres}{{15.3}{340}} -\@writefile{toc}{\contentsline {subsection}{\numberline {15.3.1}GMRES solver for Newton update equation}{340}} -\@writefile{lof}{\contentsline {figure}{\numberline {15.2}{\ignorespaces The flow of envelope-following method.\relax }}{341}} -\newlabel{fig:ef_flow}{{15.2}{341}} -\@writefile{loa}{\contentsline {algocf}{\numberline {14}{\ignorespaces Standard GMRES algorithm.\relax }}{342}} -\newlabel{alg:GMRES}{{14}{342}} -\newlabel{line:mvp}{{5}{342}} -\newlabel{line:newnorm}{{11}{342}} -\@writefile{toc}{\contentsline {subsection}{\numberline {15.3.2}Parallelization on GPU platforms}{342}} -\newlabel{sec:gpu}{{15.3.2}{342}} -\@writefile{lof}{\contentsline {figure}{\numberline {15.3}{\ignorespaces GPU parallel solver for envelope-following update.\relax }}{343}} -\newlabel{fig:gmres}{{15.3}{343}} -\@writefile{toc}{\contentsline {subsection}{\numberline {15.3.3}Gear-2 based sensitivity calculation}{344}} -\newlabel{sec:gear}{{15.3.3}{344}} -\newlabel{eq:BE}{{15.4}{344}} -\newlabel{eq:sens1}{{15.5}{344}} -\newlabel{eq:Gear_t2}{{15.6}{345}} -\newlabel{eq:sens2}{{15.7}{345}} -\newlabel{eq:Gear_t3}{{15.8}{345}} -\newlabel{eq:sensM}{{15.9}{345}} -\@writefile{loa}{\contentsline {algocf}{\numberline {15}{\ignorespaces The matrix-free method for Krylov subspace construction.\relax }}{346}} -\newlabel{alg:mf_Gear}{{15}{346}} -\newlabel{line:mf_Gear_loop}{{4}{346}} -\newlabel{line:shift}{{8}{346}} -\@writefile{toc}{\contentsline {section}{\numberline {15.4}Numerical examples}{346}} -\newlabel{sec:exp}{{15.4}{346}} -\@writefile{lof}{\contentsline {figure}{\numberline {15.4}{\ignorespaces Diagram of a zero-voltage quasi-resonant flyback converter.\relax }}{347}} -\newlabel{fig:flyback}{{15.4}{347}} -\@writefile{lof}{\contentsline {figure}{\numberline {15.5}{\ignorespaces Illustration of power/ground network model.\relax }}{347}} -\newlabel{fig:pg}{{15.5}{347}} -\newlabel{fig:flybackWhole}{{15.6(a)}{348}} -\newlabel{sub@fig:flybackWhole}{{(a)}{348}} -\newlabel{fig:flybackZoom}{{15.6(b)}{348}} -\newlabel{sub@fig:flybackZoom}{{(b)}{348}} -\@writefile{lof}{\contentsline {figure}{\numberline {15.6}{\ignorespaces Flyback converter solution calculated by envelope-following. The red curve is traditional SPICE simulation result, and the back curve is the envelope-following output with simulation points marked.\relax }}{348}} -\@writefile{lof}{\contentsline {subfigure}{\numberline{(a)}{\ignorespaces {The whole plot}}}{348}} -\@writefile{lof}{\contentsline {subfigure}{\numberline{(b)}{\ignorespaces {Detail of one EF simulation period}}}{348}} -\newlabel{fig:flyback_wave}{{15.6}{348}} -\@writefile{lof}{\contentsline {figure}{\numberline {15.7}{\ignorespaces Buck converter solution calculated by envelope-following.\relax }}{349}} -\newlabel{fig:buck_wave}{{15.7}{349}} -\@writefile{lot}{\contentsline {table}{\numberline {15.1}{\ignorespaces CPU and GPU time comparisons (in seconds) for solving Newton update equation with the proposed Gear-2 sensitivity. \relax }}{349}} -\newlabel{table:circuit}{{15.1}{349}} -\@writefile{toc}{\contentsline {section}{\numberline {15.5}Summary}{350}} -\newlabel{sec:summary}{{15.5}{350}} -\@writefile{toc}{\contentsline {section}{\numberline {15.6}Glossary}{350}} -\@writefile{toc}{\contentsline {section}{Bibliography}{350}} +\@writefile{toc}{\contentsline {section}{\numberline {14.1}Introduction}{299}} +\newlabel{fig:ef1}{{14.1(a)}{301}} +\newlabel{sub@fig:ef1}{{(a)}{301}} +\newlabel{fig:ef2}{{14.1(b)}{301}} +\newlabel{sub@fig:ef2}{{(b)}{301}} +\@writefile{lof}{\contentsline {figure}{\numberline {14.1}{\ignorespaces Transient envelope-following analysis. (Both two figures reflect backward-Euler style envelope-following.)\relax }}{301}} +\@writefile{lof}{\contentsline {subfigure}{\numberline{(a)}{\ignorespaces {Illustration of one envelope skip.}}}{301}} +\@writefile{lof}{\contentsline {subfigure}{\numberline{(b)}{\ignorespaces {The envelope changes in a slow time scale.}}}{301}} +\newlabel{fig:ef_intro}{{14.1}{301}} +\@writefile{toc}{\contentsline {section}{\numberline {14.2}The envelope-following method in a nutshell}{302}} +\newlabel{sec:ef}{{14.2}{302}} +\newlabel{eq:dae}{{14.1}{302}} +\newlabel{eq:Newton}{{14.2}{303}} +\newlabel{eq:A}{{14.3}{303}} +\@writefile{toc}{\contentsline {section}{\numberline {14.3}New parallel envelope-following method}{304}} +\newlabel{sec:gmres}{{14.3}{304}} +\@writefile{toc}{\contentsline {subsection}{\numberline {14.3.1}GMRES solver for Newton update equation}{304}} +\@writefile{lof}{\contentsline {figure}{\numberline {14.2}{\ignorespaces The flow of envelope-following method.\relax }}{305}} +\newlabel{fig:ef_flow}{{14.2}{305}} +\@writefile{loa}{\contentsline {algocf}{\numberline {14}{\ignorespaces Standard GMRES algorithm.\relax }}{306}} +\newlabel{alg:GMRES}{{14}{306}} +\newlabel{line:mvp}{{5}{306}} +\newlabel{line:newnorm}{{11}{306}} +\@writefile{toc}{\contentsline {subsection}{\numberline {14.3.2}Parallelization on GPU platforms}{306}} +\newlabel{sec:gpu}{{14.3.2}{306}} +\@writefile{lof}{\contentsline {figure}{\numberline {14.3}{\ignorespaces GPU parallel solver for envelope-following update.\relax }}{307}} +\newlabel{fig:gmres}{{14.3}{307}} +\@writefile{toc}{\contentsline {subsection}{\numberline {14.3.3}Gear-2 based sensitivity calculation}{308}} +\newlabel{sec:gear}{{14.3.3}{308}} +\newlabel{eq:BE}{{14.4}{308}} +\newlabel{eq:sens1}{{14.5}{308}} +\newlabel{eq:Gear_t2}{{14.6}{309}} +\newlabel{eq:sens2}{{14.7}{309}} +\newlabel{eq:Gear_t3}{{14.8}{309}} +\newlabel{eq:sensM}{{14.9}{309}} +\@writefile{loa}{\contentsline {algocf}{\numberline {15}{\ignorespaces The matrix-free method for Krylov subspace construction.\relax }}{310}} +\newlabel{alg:mf_Gear}{{15}{310}} +\newlabel{line:mf_Gear_loop}{{4}{310}} +\newlabel{line:shift}{{8}{310}} +\@writefile{toc}{\contentsline {section}{\numberline {14.4}Numerical examples}{310}} +\newlabel{sec:exp}{{14.4}{310}} +\@writefile{lof}{\contentsline {figure}{\numberline {14.4}{\ignorespaces Diagram of a zero-voltage quasi-resonant flyback converter.\relax }}{311}} +\newlabel{fig:flyback}{{14.4}{311}} +\@writefile{lof}{\contentsline {figure}{\numberline {14.5}{\ignorespaces Illustration of power/ground network model.\relax }}{311}} +\newlabel{fig:pg}{{14.5}{311}} +\newlabel{fig:flybackWhole}{{14.6(a)}{312}} +\newlabel{sub@fig:flybackWhole}{{(a)}{312}} +\newlabel{fig:flybackZoom}{{14.6(b)}{312}} +\newlabel{sub@fig:flybackZoom}{{(b)}{312}} +\@writefile{lof}{\contentsline {figure}{\numberline {14.6}{\ignorespaces Flyback converter solution calculated by envelope-following. The red curve is traditional SPICE simulation result, and the back curve is the envelope-following output with simulation points marked.\relax }}{312}} +\@writefile{lof}{\contentsline {subfigure}{\numberline{(a)}{\ignorespaces {The whole plot}}}{312}} +\@writefile{lof}{\contentsline {subfigure}{\numberline{(b)}{\ignorespaces {Detail of one EF simulation period}}}{312}} +\newlabel{fig:flyback_wave}{{14.6}{312}} +\@writefile{lof}{\contentsline {figure}{\numberline {14.7}{\ignorespaces Buck converter solution calculated by envelope-following.\relax }}{313}} +\newlabel{fig:buck_wave}{{14.7}{313}} +\@writefile{lot}{\contentsline {table}{\numberline {14.1}{\ignorespaces CPU and GPU time comparisons (in seconds) for solving Newton update equation with the proposed Gear-2 sensitivity. \relax }}{313}} +\newlabel{table:circuit}{{14.1}{313}} +\@writefile{toc}{\contentsline {section}{\numberline {14.5}Summary}{314}} +\newlabel{sec:summary}{{14.5}{314}} +\@writefile{toc}{\contentsline {section}{\numberline {14.6}Glossary}{314}} +\@writefile{toc}{\contentsline {section}{Bibliography}{314}} \@setckpt{Chapters/chapter16/ch16}{ -\setcounter{page}{352} +\setcounter{page}{316} \setcounter{equation}{9} \setcounter{enumi}{2} \setcounter{enumii}{0} @@ -77,8 +77,8 @@ \setcounter{enumiv}{22} \setcounter{footnote}{0} \setcounter{mpfootnote}{0} -\setcounter{part}{1} -\setcounter{chapter}{15} +\setcounter{part}{5} +\setcounter{chapter}{14} \setcounter{section}{6} \setcounter{subsection}{0} \setcounter{subsubsection}{0} @@ -98,6 +98,13 @@ \setcounter{algocfline}{15} \setcounter{algocfproc}{15} \setcounter{algocf}{15} +\setcounter{nprt@mantissa@digitsbefore}{0} +\setcounter{nprt@mantissa@digitsafter}{0} +\setcounter{nprt@exponent@digitsbefore}{0} +\setcounter{nprt@exponent@digitsafter}{0} +\setcounter{nprt@digitsfirstblock}{0} +\setcounter{nprt@blockcnt}{0} +\setcounter{nprt@cntprint}{0} \setcounter{proposition}{1} \setcounter{theorem}{0} \setcounter{exercise}{0}