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简介:FRED作为COM组件可以实现与Excel、VB、Matlab等调用来完成庞大的计算任务或画图,本文的目的是通过运行一个案例来实现与Matlab的相互调用,在此我们需要借助脚本来完成,此脚本为视为通用型脚本。 +PK6-c\r $0^P0RAH 配置:在执行调用之前,我们需要在Matlab命令行窗口输入如下命令: I\|N enableservice('AutomationServer', true) W9oAjO NE enableservice('AutomationServer') +u'I0>)S 1qi@uYDug 结果输出为1,这种操作方式保证了当前的Matlab实体可以用于通信。 pb0E@C/R )~jqW=d
2 在winwrp界面,为增加和使用Matlab类型的目录库,我们需要如下步骤: _8G>&K3T< 1. 在FRED脚本编辑界面找到参考. 79=45' 8 2. 找到Matlab Automation Server Type Library 9%sM*[A 3. 将名字改为MLAPP )IT6vU"-yd +%\oO/4Fs $mGvJ*9 在Matlab里面有两种常用的数据发送选项PutWorkspaceData 及PutFullMatrix,PutWorkspaceData适用于存储一般的数据在工作区,并赋予其为变量,PutFullMatrix试用于复数数据。 I^Z8PEc+ 6Fy@s 图 编辑/参考 $<p8TtI=YQ 0J~Qq]g 现在将脚本代码公布如下,此脚本执行如下几个步骤: :c8n[+5 1. 创建Matlab服务器。
fa.0I~ 2. 移动探测面对于前一聚焦面的位置。 6b~28 3. 在探测面追迹光线 {0!#>["< 4. 在探测面计算照度 [0[M'![8M 5. 使用PutWorkspaceData发送照度数据到Matlab @
\2#Dpr 6. 使用PutFullMatrix发送标量场数据到Matlab中 8dK0o>|} 7. 用Matlab画出照度数据 *^ \FIUd 8. 在Matlab计算照度平均值 uIMe 9. 返回数据到FRED中 ?*r!{3T ,u hY<{t.ws 代码分享: wcDjg&:=ml TFDm5XJ Option Explicit &@ 3m-Z }jSj+* Sub Main 6k?`:QK/sl j[6Raf/(n Dim ana As T_ANALYSIS l0tYG[ Dim move As T_OPERATION r+<{S\ Q Dim Matlab As MLApp.MLApp FbACTeB Dim detNode As Long, detSurfNode As Long, anaSurfNode As Long f+vVR1 Dim raysUsed As Long, nXpx As Long, nYpx As Long dPjhq(8 zU Dim irrad() As Double, imagData() As Double, reals() As Double, imags() As Double Hoz5 6y Dim z As Double, xMin As Double, xMax As Double, yMin As Double, yMax As Double *Dr5O 9Y Dim meanVal As Variant =7
,Kf}6 K
X]oE+: Set Matlab = CreateObject("Matlab.Application") oQ+61!5> Gt/4F-Gn ClearOutputWindow j?n+>/sG, h7qBp300 'Find the node numbers for the entities being used. |s gXh9%x< detNode = FindFullName("Geometry.Screen") \)m"3yY detSurfNode = FindFullName("Geometry.Screen.Surf 1") ZI ?W5ISdg anaSurfNode = FindFullName("Analysis Surface(s).Analysis 1") >{Rb 3Z] +yt6(7V* 'Load the properties of the analysis surface being used. wX1ig LoadAnalysis anaSurfNode, ana '4;6u]d)2 Gk~l,wV> 'Move the detector custom element to the desired z position. Tvf~P w z = 50 ;)!"Ty| GetOperation detNode,1,move #I`ms$j% move.Type = "Shift" ,=[*Lo>O move.val3 = z 0o&}mKe SetOperation detNode,1,move i+M*J#' Print "New screen position, z = " &z dGgP_S zXc}W*ymj 'Update the model and trace rays. hhRaJ EnableTextPrinting (False) evl-V> Update E1>/R DeleteRays F!KV\?eM$ TraceCreateDraw ]T{E
(9 EnableTextPrinting (True) 2f:Mm'XdB T% CxvZ 'Calculate the irradiance for rays on the detector surface. :7;[`bm(G raysUsed = Irradiance( detSurfNode, -1, ana, irrad ) Pl~P- n Print raysUsed & " rays were included in the irradiance calculation. tGqCt9;< 5)lW 'When using real number data to send to MATLAB, it is simplest to use PutWorkspaceData. {sS_|sX Matlab.PutWorkspaceData("irradiance_pwd","base",irrad) xDrV5bg u39FN?<^ 'PutFullMatrix is more useful when actually having complex data such as with 6GOcI#C9C 'scalar wavefield, for example. Note that the scalarfield array in MATLAB K%,$ V,# 'is a complex valued array. /B HepD} raysUsed = ScalarField ( detSurfNode, -1, ana, reals, imags ) ~LE[,
I:q Matlab.PutFullMatrix("scalarfield","base", reals, imags ) Z6=~1'<X Print raysUsed & " rays were included in the scalar field calculation." lg/sMF>z\f Rlc$;Z9K 'Calculate plot characteristics from the T_ANALYSIS structure. This information is used K=kH%ZK 'to customize the plot figure. Ge}$rLu]0 xMin = ana.posX+ana.AcellX*(ana.Amin-0.5) .1ddv4Hk xMax = ana.posX+ana.AcellX*(ana.Amax+0.5) s'2Rs^,hN yMin = ana.posY+ana.BcellY*(ana.Bmin-0.5) lpEDPvD_Vm yMax = ana.posY+ana.BcellY*(ana.Bmax+0.5)
Q&+c.S nXpx = ana.Amax-ana.Amin+1 |6B6?' nYpx = ana.Bmax-ana.Bmin+1 M9V-$ _) yU`:IMz 'Plot the data in Matlab with some parameters calculated from the T_ANALYSIS {$TZ}z"DA 'structure. Set the axes labels, title, colorbar and plot view. _ 5\AS+[x
Matlab.Execute( "figure; surf(linspace("&xMin &","&xMax &","&nXpx &"),linspace("& yMin &"," & yMax & "," & nYpx & "),irradiance_pwd, 'EdgeColor', 'None');" ) ~ v1W Matlab.Execute( "xlabel('X Position (" & GetUnits() & ")')" ) : Matlab.Execute( "ylabel('Y Position (" & GetUnits() & ")')" ) : Matlab.Execute( "zLabel( 'Irradiance' )" ) ?6:cNdN Matlab.Execute( "title('Detector Irradiance')" ) 8gpB z'/, Matlab.Execute( "colorbar" ) Hcl"T1N* Matlab.Execute( "view(2)" ) IrO+5 w Print "" Lpm?#g uR Print "Matlab figure plotted..." 1KJZWZy dF2@q@\.+ 'Have Matlab calculate and return the mean value. Y.
TYc; Matlab.Execute( "irrad = mean(mean(irradiance_pwd));" ) }GRMZh_8 Matlab.GetWorkspaceData( "irrad", "base", meanVal ) utd:&q|} Print "The mean irradiance value calculated by Matlab is: " & meanVal L[]^{ O 91;HiILgT
'Release resources :J%'=_I&H Set Matlab = Nothing LkaG[^tfN ^uBwj}6 End Sub .;%q/hP 8?Wgawx 最后在Matlab画图如下: IgA.%}II} '(9YB9 i 并在工作区保存了数据: .wri5 -h9#G{2W[ k.>6nho`TV 并返回平均值: zv9MHC
& Hd*Fc=>"Y 与FRED中计算的照度图对比: j1F w
U fIEw(k<* 例: {*__B} ,N T/7vM 6u 此例系统数据,可按照此数据建立模型 #`58F . Z3n~&! 系统数据 %L cH>sV }MjQP R )[ w&C_>] 光源数据: Gx;xj0-" Type: Laser Beam(Gaussian 00 mode) ,]U[W Beam size: 5; x.G"D( Grid size: 12; 4[_L=zD Sample pts: 100; D@5s8xv 相干光; e7's)C>/' 波长0.5876微米, _y-B";Vmm
距离原点沿着Z轴负方向25mm。 ~%KM3Vap EJ8I[( 对于执行代码,如果想保存图片,请在开始之前一定要执行如下代码: rV U:VL`2 enableservice('AutomationServer', true) \L
%q[ enableservice('AutomationServer') Z{#"-UG
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