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📁 关于自组织神经网络的一种新结构程序,并包含了其它几种神经网络的程序比较
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\hfill\begin{minipage}[b]{0.6cm}  \centerline{\epsfig {width=1\textwidth, file=eps/Display.ps}} \hfill  \centerline{Display}\end{minipage}\hfill\begin{minipage}[b]{2cm}  \centerline{\epsfig {width=1\textwidth, file=eps/Speed.ps}}  \centerline{Speed}\end{minipage}\end{figure}%\lthtmlfigureZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlfigureA{figure311}%\begin{figure}\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2cm,file=eps/UNI.ps}}  \centerline{UNI}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2cm,file=eps/SmallSpirals.ps}}  \centerline{Small Spirals}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2cm,file=eps/Unit.ps}}  \centerline{UNIT}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2.5cm,file=eps/Rectangle.ps}}  \centerline{Rectangle}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2.5cm,file=eps/LargeSpirals.ps}}  \centerline{Large Spirals}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2.5cm,file=eps/HiLoDensity.ps}}  \centerline{HiLo Density}   \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth} \centerline{\epsfig {width=1\textwidth, height=3.5cm,file=eps/Circle.ps}}  \centerline{Circle}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=3.5cm,file=eps/Ring.ps}}  \centerline{Ring}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=3.5cm,file=eps/Discrete.ps}}  \centerline{Discrete}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2.5cm,file=eps/MoveAndJump.ps}}  \centerline{Move \& Jump}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2.5cm,file=eps/Move.ps}}  \centerline{Move}  \medskip\end{minipage}\hfill\begin{minipage}[b]{0.32\textwidth}  \centerline{\epsfig {width=1\textwidth, height=2.5cm,file=eps/Jump.ps}}  \centerline{Jump}  \medskip\end{minipage}\end{figure}%\lthtmlfigureZ\hfill\lthtmlcheckvsize\clearpage}\stepcounter{subsection}\stepcounter{subsubsection}\stepcounter{subsubsection}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline670}%$\epsilon$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline672}%$\epsilon_i$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline674}%$\epsilon_f$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmldisplayA{displaymath407}%\begin{displaymath}\qquad\epsilon(t) = \epsilon_i(\epsilon_f/\epsilon_i)^{t/t_{\rm max}}.\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}\stepcounter{subsubsection}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline678}%$\lambda_i$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline680}%$\lambda_f$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmldisplayA{displaymath415}%\begin{displaymath}\Delta \mbox{\bf w}_i = \epsilon(t) \cdot h_\lambda(k_i(\mbox{\boldmath$\xi$},{\cal A})) \cdot (\mbox{\boldmath$\xi$}- \mbox{\bf w}_i)\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmldisplayA{displaymath417}%\begin{displaymath}\lambda(t) = \lambda_i (\lambda_f/\lambda_i)^{t/t_{\rm max}}\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmldisplayA{displaymath420}%\begin{displaymath}\qquad\epsilon(t) = \epsilon_i(\epsilon_f/\epsilon_i)^{t/t_{\rm max}}\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmldisplayA{displaymath423}%\begin{displaymath}h_\lambda(k) = \exp(-k/\lambda(t)).\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}\stepcounter{subsubsection}\stepcounter{subsubsection}{\newpage\clearpage\lthtmldisplayA{displaymath433}%\begin{displaymath}T(t) = T_i(T_f/T_i) ^ {t/t_{\rm max}}.\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}\stepcounter{subsubsection}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline718}%$i := arg\   min_cU_c$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline724}%$\lambda$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline728}%$\epsilon_b$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline730}%$\epsilon_n$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline732}%$\alpha$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline734}%$\beta$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}\stepcounter{subsubsection}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline740}%$\sigma_i$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline742}%$\sigma_f$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline746}%$\epsilon(t)$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline748}%$\sigma(t)$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmldisplayA{displaymath458}%\begin{displaymath}\epsilon(t) = \epsilon_i(\epsilon_f/\epsilon_i)^{t/t_{\rm max}},\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmldisplayA{displaymath461}%\begin{displaymath}\sigma(t) = \sigma_i(\sigma_f/\sigma_i)^{t/t_{\rm max}}.\end{displaymath}%\lthtmldisplayZ\hfill\lthtmlcheckvsize\clearpage}\stepcounter{subsubsection}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline750}%$\lambda_g$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}{\newpage\clearpage\lthtmlinlinemathA{tex2html_wrap_inline758}%$\sigma$%\lthtmlinlinemathZ\hfill\lthtmlcheckvsize\clearpage}\stepcounter{section}\stepcounter{section}\end{document}

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