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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。 c~= {A >#y1(\e 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: ]/|DCxQ enableservice('AutomationServer', true) v8TNBsEL enableservice('AutomationServer') tILnD1q @9lGU# 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。 AMN`bgxW :4)lmIu 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: A:\_ \B%< 1. 在FRED脚本编辑界面找到参考. H'I5LYsXO~ 2. 找到Matlab Automation Server Type Library !Pu7%nV. 3. 将名字改为MLAPP ?4t~z 1.f KVHK~Y-G ceLr;}?Ws 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。 GS*_m4.Ry6 ]''tuo2g8 图 编辑/参考 D=B :tP m/WDJ$d 现在将脚本代码公布如下,此脚本执行如下几个步骤: X^C $|: 1. 创建Matlab服务器。 d>/4z#R}- 2. 移动探测面对于前一聚焦面的位置。 +!t *LSF 3. 在探测面追迹光线 ltHuN;C\ 4. 在探测面计算照度 7'5/T]Z 5. 使用PutWorkspaceData发送照度数据到Matlab f5R%F~ 6. 使用PutFullMatrix发送标量场数据到Matlab中 xEB4oQ5 7. 用Matlab画出照度数据 @^`5;JiUk 8. 在Matlab计算照度平均值 /x/W>J2 9. 返回数据到FRED中 USXPa[ 1(kd3qX 代码分享: w_YY~Af ZRUA w,T * Option Explicit #Z]<E6<=9 !9^GkFR6n Sub Main XX*f ktv{-WG2_ Dim ana As T_ANALYSIS eXdH)|l,\ Dim move As T_OPERATION
K4^B ~0~ Dim Matlab As MLApp.MLApp 72y!cK6 Dim detNode As Long, detSurfNode As Long, anaSurfNode As Long mHc2v==X\- Dim raysUsed As Long, nXpx As Long, nYpx As Long B,Jn.YX Dim irrad() As Double, imagData() As Double, reals() As Double, imags() As Double d_98%U+u Dim z As Double, xMin As Double, xMax As Double, yMin As Double, yMax As Double wDs#1`uTq Dim meanVal As Variant }J=z O8OL 7.C]ZcU Set Matlab = CreateObject("Matlab.Application") K$M,d-
`b tdC
kvVE ClearOutputWindow &HJ~\6r\ ,7e 2M@=
'Find the node numbers for the entities being used. 4;w#mzd detNode = FindFullName("Geometry.Screen") .|K\1qGW0 detSurfNode = FindFullName("Geometry.Screen.Surf 1") 2aQ}|
` anaSurfNode = FindFullName("Analysis Surface(s).Analysis 1") *kDV ^RBfq FRTvo 'Load the properties of the analysis surface being used. NO#^_N`#\ LoadAnalysis anaSurfNode, ana wJF$<f7P |nO}YU\E 'Move the detector custom element to the desired z position. q{.~=~ z = 50 taOsC!Bp GetOperation detNode,1,move 3lNw*M|") move.Type = "Shift" Pq(
)2B move.val3 = z 5?|PC. SetOperation detNode,1,move zdDJcdbGd1 Print "New screen position, z = " &z Q1'D*F4 ..^,* 'Update the model and trace rays. .]Z,O>N EnableTextPrinting (False) ~#[ ZuMO? Update v aaZ DeleteRays [g*]u3s TraceCreateDraw jdVdz,Y EnableTextPrinting (True) 4U:+iumy2 !!t@H\ 'Calculate the irradiance for rays on the detector surface. n1c Q#u raysUsed = Irradiance( detSurfNode, -1, ana, irrad ) fKT(.VNq5 Print raysUsed & " rays were included in the irradiance calculation. Z8Clm:S fmq^AnKd 'When using real number data to send to MATLAB, it is simplest to use PutWorkspaceData. e 3>k" Matlab.PutWorkspaceData("irradiance_pwd","base",irrad) ts0K"xmY\c v6?<)M% 'PutFullMatrix is more useful when actually having complex data such as with w@2LFDp 'scalar wavefield, for example. Note that the scalarfield array in MATLAB v]27+/a$c 'is a complex valued array. %25_ raysUsed = ScalarField ( detSurfNode, -1, ana, reals, imags ) Ljxn}):[ Matlab.PutFullMatrix("scalarfield","base", reals, imags ) [G|2m_ Print raysUsed & " rays were included in the scalar field calculation." 4B}w;d@R |wj/lX7y 'Calculate plot characteristics from the T_ANALYSIS structure. This information is used ]R{=| 'to customize the plot figure. Bf88f<Z xMin = ana.posX+ana.AcellX*(ana.Amin-0.5) HIeMV,.QN xMax = ana.posX+ana.AcellX*(ana.Amax+0.5) OiY2l;68 yMin = ana.posY+ana.BcellY*(ana.Bmin-0.5) Ic&t_B*i}] yMax = ana.posY+ana.BcellY*(ana.Bmax+0.5) "Hjw nXpx = ana.Amax-ana.Amin+1 Xc5[d`] nYpx = ana.Bmax-ana.Bmin+1 vR~*r6hX8 V2]S{!p}k 'Plot the data in Matlab with some parameters calculated from the T_ANALYSIS o6KBJx 'structure. Set the axes labels, title, colorbar and plot view. 6YU2
!x Matlab.Execute( "figure; surf(linspace("&xMin &","&xMax &","&nXpx &"),linspace("& yMin &"," & yMax & "," & nYpx & "),irradiance_pwd, 'EdgeColor', 'None');" ) a^5`fA/L, Matlab.Execute( "xlabel('X Position (" & GetUnits() & ")')" ) : Matlab.Execute( "ylabel('Y Position (" & GetUnits() & ")')" ) : Matlab.Execute( "zLabel( 'Irradiance' )" ) z(orA} [ Matlab.Execute( "title('Detector Irradiance')" ) JnY3] Matlab.Execute( "colorbar" ) @+X}O/74 Matlab.Execute( "view(2)" ) e@,,;YO#4 Print "" Nd!2 @?V4 Print "Matlab figure plotted..." rb\Ohv\ e?lqs,m@" 'Have Matlab calculate and return the mean value. W{m0z+N[B Matlab.Execute( "irrad = mean(mean(irradiance_pwd));" ) \a]\jZb Matlab.GetWorkspaceData( "irrad", "base", meanVal ) 6eK^T= Print "The mean irradiance value calculated by Matlab is: " & meanVal 83l)o$S {Rj' =%h 'Release resources TcfBfscU Set Matlab = Nothing -;`W"&`ss ?s"v0cg+ End Sub #1bgV M9OFK\) 最后在Matlab画图如下: LMG\jc?, lIFU7g 并在工作区保存了数据: 4QZy-a*tA Gj_b GqF8} V_W=MWs&+ 并返回平均值: VYAe!{[ "^D6%I#T 与FRED中计算的照度图对比: ^&rbI,D }\*Sf[EMD 例: E0DEFB Y)
t}%62 此例系统数据,可按照此数据建立模型 *-Yw0Y[E zuPH3Q={ 系统数据 oV!9B -< X*yl%V
#dfW1@m 光源数据: Hf-F-~E Type: Laser Beam(Gaussian 00 mode) h B+ t
pa Beam size: 5; TnaIRJ\B Grid size: 12; HYH!; Sample pts: 100; ~3YNHm6V 相干光; 68!fcK 波长0.5876微米, &sRJ'oc 距离原点沿着Z轴负方向25mm。 )yK!qu } R/ 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: '~cEdGD9H enableservice('AutomationServer', true) UiEB?X]-l' enableservice('AutomationServer') uR%H"f
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