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mj-msc.tex
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mj-msc.tex
@ -697,8 +697,10 @@ functions\cite{postgisref} for working with geometric and geographic objects.
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Due to its wide applicability and rich library of spatial functions, PostGIS is
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the implementation language of the {\WM} algorithm. The implementation exposes
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the entrypoint function \textsc{st\_simplifywm}:
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the entrypoint function \textsc{st\_simplifywm}, in
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listing~\ref{lst:st-simplifywm}.
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\begin{listing}
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\begin{minted}[fontsize=\small]{sql}
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create function ST_SimplifyWM(
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geom geometry,
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@ -707,6 +709,9 @@ create function ST_SimplifyWM(
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dbgname text default null
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) returns geometry
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\end{minted}
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\caption{Function \textsc{st\_simplifywm}.}
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\label{lst:st-simplifywm}
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\end{listing}
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This function accepts the following parameters:
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\begin{description}
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@ -1392,21 +1397,14 @@ Our generalized results are viewed from the following angles:
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\subsubsection{Medium-scale (1:\numprint{50000})}
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\label{sec:analyzed-medium-scale}
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\begin{figure}[h]
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\begin{figure}[h!]
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\centering
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\includegraphics[width=\textwidth]{salvis-wm75--grpk10-1x50k}
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\caption{2x zoomed-in {\WM} for 1:\numprint{50000}.}
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\label{fig:salvis-wm75--grpk10-1x50k}
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\end{figure}
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\begin{figure}[h]
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\centering
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\includegraphics[width=\textwidth]{salvis-wm75--grpk10-1x50ktl}
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\caption{Left part of Figure~\ref{fig:salvis-wm75--grpk10-1x50k}.}
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\label{fig:salvis-wm75--grpk10-1x50ktl}
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\end{figure}
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\begin{figure}[h]
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\begin{figure}[h!]
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\centering
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\includegraphics[width=\textwidth]{salvis-wm75--grpk10-1x50ktr}
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\caption{Top--right part of Figure~\ref{fig:salvis-wm75--grpk10-1x50k}.}
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@ -1467,8 +1465,6 @@ A conglomeration of bends is visible, especially in top--right side of the
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illustration. We assume this was caused by two bends significantly exaggerated,
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leaving no space to exaggerate for those between the two.
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\clearpage
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\subsubsection{Discussion}
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For mid-size scales of 1:\numprint{50000}, the implemented algorithm works well
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@ -1508,11 +1504,9 @@ downloaded for free from \cite{nzt}. Here are the meanings of the codenames:
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\end{description}
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During the analysis, we ran {\WM} on GRPK10 for 2 destination scales:
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1:\numprint{50000} and 1:\numprint{250000}.\footnote{How parameters are
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calculated is detailed in section~\ref{sec:bend-scaling-and-dimensions}.} This
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section compares the resulting {\WM}--generalized rivers to GRPK50 and GRPK250.
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\clearpage
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1:\numprint{50000} and 1:\numprint{250000}.\footnote{parameter calculation is
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detailed in section~\ref{sec:bend-scaling-and-dimensions}.} This section
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compares the resulting {\WM}--generalized rivers to GRPK50 and GRPK250.
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\subsubsection{Medium-scale (1:\numprint{50000})}
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@ -1530,6 +1524,13 @@ original GRPK10.
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\label{fig:salvis-wm75-grpk50-grpk10-1x50k}
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\end{figure}
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\begin{figure}[h!]
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\centering
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\includegraphics[width=\textwidth]{salvis-wm75-grpk50-grpk10-1x50ktl}
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\caption{Left side of Figure~\ref{fig:salvis-wm75-grpk50-grpk10-1x50k}.}
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\label{fig:salvis-wm75-grpk50-grpk10-1x50ktl}
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\end{figure}
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\begin{figure}[h!]
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\centering
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\includegraphics[width=\textwidth]{salvis-wm75-grpk50-grpk10-1x50ktr}
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@ -1632,8 +1633,6 @@ produces poorly simplified results for some geometries.
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\label{fig:openmap-wm-bad}
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\end{figure}
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\clearpage
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\section{Conclusions}
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\label{sec:conclusions}
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