Overview
Comment: | Updated cross-reference. |
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05a9aa7aaa3ab9235a12c820c3c061a3 |
User & Date: | geraint@users.sourceforge.net on 2002-09-29 14:19:44 |
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Context
2002-09-29
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14:23:16 | Updated switch names. check-in: cfe4360a05 user: geraint@users.sourceforge.net tags: origin/master, trunk | |
14:19:44 | Updated cross-reference. check-in: 05a9aa7aaa user: geraint@users.sourceforge.net tags: origin/master, trunk | |
13:47:35 | Updated names. check-in: d53a964fea user: geraint@users.sourceforge.net tags: origin/master, trunk | |
Changes
Modified mttroot/mtt/lib/examples/Hybrid/Weirs/Weirs_desc.tex from [f979aa3c3b] to [75ce1911ff].
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 | % Verbal description for system Weirs (Weirs_desc.tex) % Generated by MTT on Thu Jul 3 10:27:26 BST 1997. % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % %% Version control history % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % %% $Id$ % %% $Log$ % Revision 1.1 1997/09/11 10:31:48 peterg % Initial revision % % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% The acausal bond graph of system \textbf{Weirs} is displayed in Figure \Ref{Weirs_abg} and its label | > > > | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 | % Verbal description for system Weirs (Weirs_desc.tex) % Generated by MTT on Thu Jul 3 10:27:26 BST 1997. % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % %% Version control history % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % %% $Id$ % %% $Log$ % %% Revision 1.1 2000/12/28 17:47:43 peterg % %% To RCS % %% % Revision 1.1 1997/09/11 10:31:48 peterg % Initial revision % % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% The acausal bond graph of system \textbf{Weirs} is displayed in Figure \Ref{Weirs_abg} and its label |
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43 44 45 46 47 48 49 | %corresponds to flow inertia; but it is admitted that ideal %\textbf{Sw} components would give a simpler approximation in this %case. So the modeller has the choice of having a simple simulation %problem but with four extra states, or a complex simulation with model %switching but without the four extra states. The system was simulated for 20 time units and the resultant level of | | | 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 | %corresponds to flow inertia; but it is admitted that ideal %\textbf{Sw} components would give a simpler approximation in this %case. So the modeller has the choice of having a simple simulation %problem but with four extra states, or a complex simulation with model %switching but without the four extra states. The system was simulated for 20 time units and the resultant level of each tank partition is plotted in Figure \Ref{fig:Weirs_odeso-noargs.ps}. Each partition has unit cross section, and the two weir heights are $1$ and $2$ respectively; the inflow $f$ is given by: \begin{equation} f = \begin{cases} 1 & \text{if $t \le 10$}\\ 0 & \text{if $t > 10$} |
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