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    [技术]FRED如何调用Matlab [复制链接]

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    只看楼主 倒序阅读 楼主  发表于: 2021-10-25
    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。 y S<&d#:"  
    t$R0UprK  
    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: 3Gw*K-.  
    enableservice('AutomationServer', true) Q^?$2ck=  
    enableservice('AutomationServer') %%h.`p1  
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    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 w[EEA_\  
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    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: T/J1 b-  
    1. 在FRED脚本编辑界面找到参考. q>6,g>I  
    2. 找到Matlab Automation Server Type Library %Rk0sfLvn  
    3. 将名字改为MLAPP l SuNZY aO  
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    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。 |]-~yYqP3  
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    图 编辑/参考
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    现在将脚本代码公布如下,此脚本执行如下几个步骤: xZloEfv.B  
    1. 创建Matlab服务器。 UCo<ie\V  
    2. 移动探测面对于前一聚焦面的位置。 Kf$6D 79#  
    3. 在探测面追迹光线 E|6@h8 #  
    4. 在探测面计算照度 >}u#KBedE  
    5. 使用PutWorkspaceData发送照度数据到Matlab t!>0^['g4  
    6. 使用PutFullMatrix发送标量场数据到Matlab中 vJ&35nF&  
    7. 用Matlab画出照度数据 4~WSIR-  
    8. 在Matlab计算照度平均值 i9peQ61{  
    9. 返回数据到FRED中 Oj2=&uz  
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    代码分享: i A'p!l |P  
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    Option Explicit /u"Iq8QA  
    "# Q"gC.K  
    Sub Main 'w|N} 4  
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        Dim ana As T_ANALYSIS @Qqf4 h  
        Dim move As T_OPERATION wvr`~e  
        Dim Matlab As MLApp.MLApp kkj_k:Eah  
        Dim detNode As Long, detSurfNode As Long, anaSurfNode As Long |(Xxi  
        Dim raysUsed As Long, nXpx As Long, nYpx As Long .ffr2\'*  
        Dim irrad() As Double, imagData() As Double, reals() As Double, imags() As Double V<KjKa+sG  
        Dim z As Double, xMin As Double, xMax As Double, yMin As Double, yMax As Double V9`jq$  
        Dim meanVal As Variant /5\{(=0  
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        Set Matlab = CreateObject("Matlab.Application") 1X?q4D"  
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        ClearOutputWindow ;N _ %O  
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        'Find the node numbers for the entities being used. hm1.UE  
        detNode = FindFullName("Geometry.Screen") CY!H)6k  
        detSurfNode  = FindFullName("Geometry.Screen.Surf 1") FGpV ]p  
        anaSurfNode = FindFullName("Analysis Surface(s).Analysis 1") BbzIQg:  
    l@@ qpaH  
        'Load the properties of the analysis surface being used. ~k ]$J|}za  
        LoadAnalysis anaSurfNode, ana XKT[8o<L  
    QCfR2Nn}  
        'Move the detector custom element to the desired z position. Jd33QL}Hj  
        z = 50 $^#q0Yx  
        GetOperation detNode,1,move cZw_^@!  
        move.Type = "Shift" G[P<!6Id!p  
        move.val3 = z 8BnsYy)j  
        SetOperation detNode,1,move Ye[Fu/0  
        Print "New screen position, z = " &z }7qboUGe  
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        'Update the model and trace rays. :~,V+2e  
        EnableTextPrinting (False) k{^iv:  
            Update .WGrzhsV  
            DeleteRays }O6E5YCm  
            TraceCreateDraw R>,_C7]u  
        EnableTextPrinting (True) 5N|hsfkx  
    S Fqq(K2u  
        'Calculate the irradiance for rays on the detector surface. :IozWPs*  
        raysUsed  = Irradiance( detSurfNode, -1, ana, irrad ) *+J`Yk7}  
        Print raysUsed & " rays were included in the irradiance calculation. Lcs?2c:%  
    {ka={7  
        'When using real number data to send to MATLAB, it is simplest to use PutWorkspaceData. 3X1 U  
        Matlab.PutWorkspaceData("irradiance_pwd","base",irrad) Z$K[e  
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        'PutFullMatrix is more useful when actually having complex data such as with _+&/P&  
        'scalar wavefield, for example. Note that the scalarfield array in MATLAB hOm0ND?;1  
        'is a complex valued array. Z%VgAV>>  
        raysUsed = ScalarField ( detSurfNode, -1, ana, reals, imags ) -Z:nImqzc  
        Matlab.PutFullMatrix("scalarfield","base", reals, imags ) {=P}c:i W  
        Print raysUsed & " rays were included in the scalar field calculation." ,WS{O6O7  
    U H6 Jvt  
        'Calculate plot characteristics from the T_ANALYSIS structure.  This information is used qK&h$;~*y  
        'to customize the plot figure. vVbS 4_  
        xMin = ana.posX+ana.AcellX*(ana.Amin-0.5) 4/&.N]  
        xMax = ana.posX+ana.AcellX*(ana.Amax+0.5) *47%| bf`  
        yMin = ana.posY+ana.BcellY*(ana.Bmin-0.5) c+UZ UgP  
        yMax = ana.posY+ana.BcellY*(ana.Bmax+0.5) %lGg}9k'  
        nXpx = ana.Amax-ana.Amin+1 U{3Pk0rZ  
        nYpx = ana.Bmax-ana.Bmin+1 f5#VU7=1F2  
    4?aNJyV%&  
        'Plot the data in Matlab with some parameters calculated from the T_ANALYSIS snny! 0E\m  
        'structure.  Set the axes labels, title, colorbar and plot view. XJ?zP=UK  
        Matlab.Execute( "figure; surf(linspace("&xMin &","&xMax &","&nXpx &"),linspace("& yMin &"," & yMax & "," & nYpx & "),irradiance_pwd, 'EdgeColor', 'None');" ) 28 ;x5m)N  
        Matlab.Execute( "xlabel('X Position (" & GetUnits() & ")')" ) : Matlab.Execute( "ylabel('Y Position (" & GetUnits() & ")')" ) : Matlab.Execute( "zLabel( 'Irradiance' )" ) ],f%: ?%50  
        Matlab.Execute( "title('Detector Irradiance')" ) L^jhr>-";  
        Matlab.Execute( "colorbar" ) -$(2Z[  
        Matlab.Execute( "view(2)" ) p@+D$  
        Print "" y~rtYI  
        Print "Matlab figure plotted..." V}q=!zz  
    = /=?l  
        'Have Matlab calculate and return the mean value. NO.5Vy  
        Matlab.Execute( "irrad = mean(mean(irradiance_pwd));" ) o@r~KFIe  
        Matlab.GetWorkspaceData( "irrad", "base", meanVal ) oBWa\N  
        Print "The mean irradiance value calculated by Matlab is: " & meanVal bO+L#Kf  
    #lx(F3  
        'Release resources }9Awv#+  
        Set Matlab = Nothing ;VPYWss  
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    End Sub +Pb@@C&  
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    最后在Matlab画图如下: 3>k?-%"  
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    并在工作区保存了数据: *En4~;l  
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    并返回平均值: 7^Y`'~Y^  
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    与FRED中计算的照度图对比: r%` |kN  
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    例: 6Vy4]jdT5  
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    此例系统数据,可按照此数据建立模型 gqACIXR  
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    系统数据 z6bIv }  
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    光源数据: WD?COUEox  
    Type: Laser Beam(Gaussian 00 mode) !R1OSVFp  
    Beam size: 5; ZNY), 3?  
    Grid size: 12; cmbl"Pqy1  
    Sample pts: 100; 8\e8$y3  
    相干光; 3b1%^@,ACy  
    波长0.5876微米, 3>buZ6vh  
    距离原点沿着Z轴负方向25mm。 )W3kBDD  
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    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: t3;QF  
    enableservice('AutomationServer', true) lxOUV?m^N  
    enableservice('AutomationServer') f5hf<R),A  
     
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