RPC Photonics扩散片BSDF
摘要: H2 {+) y14;%aQN RPC Photonics公司有高品质的的工程漫射体BSDF测试数据,但它对于FRED帮助甚少,下面这个步骤描述了如何利用FRED脚本转换RPC Photonics提供的TXT文件,并将数据直接应用到FRED的Tabulated scatter 散射模型。 eQm1cgMdz 2,oKVm+ 背景: !-x$L>1$ Thorlabs和RPC Photonics联手共同推出的新型漫射体及光束整形技术,可以解决其他技术的不足,大大改善了诸如光刻系统、有效固态照明,显示,背光,显示亮度增强和投影屏等大多数应用的性能。这项我们称之为工程漫射体(Engineered DiffusersTM)的新概念,与其他技术有许多不同。与诸如磨砂玻璃、乳色玻璃和全息元件等随机漫射体截然不同,工程漫射体要求对于每个散射中心,通常为微透镜单元,都进行控制。例如全息漫射体可以视为一组随机排列的透镜,但是通过全息曝光形成的类透镜效果只能通过静态方式进行控制:而无法单独操控每个微透镜单元,这也帮助解释了全息漫射体无法控制光的分布和轮廓。另一方面,在工程漫射体中,每个微透镜单元形成漫射体,由其凹形纵断面和在阵列中的位置所确定。同时,为了确保漫射体不受输入光束变化的影响,并且不产生衍射效果,微透镜单元的分布是随机的,根据产生相应的光束形状函数所选取的概率分布函数来确定。因此,工程漫射体同时保留了随机与确定性漫射体的优点,从而实现高性能的光束整形功能。 RLXL& FRED是美国Photon Engineering 公司开发的光学工程仿真软件,其在杂散光分析中独特的算法、高效的准确性,使其与其它同类产品相比更具优势。本案例我们重点讲述如何由RPC Photonics的BSDF数据转为FRED可识别的散射数据。 4Z=_,#h4.
图1. RPC Photonics工程漫射体结构及光束投射形状 Rok7n1gW O63<AY@ qr^3R&z!} 步骤 8'[7
)I= ua$GNm 1、 在http://www.rpcphotonics.com/bsdf-data-optical-diffusers/下载并解压BSDF数据到某一文件夹下,选择“Raw data”文件。 ,-c6dS <al(7
图2. RPC Photonics工程漫射体不同类型的散射数据 Sv#XIMw{, 2、 将 http://fred-kb.photonengr.com/wp-content/uploads/sites/2/2015/06/constructRpcScatterFile.frs脚本文件放在步骤1中的文件下。(脚本代码放在了本文的最后) SM#]H-3 3、 打开FRED并运行脚本文件,会输出如下“<SAMPLE>_FRED.txt”格式,<SAMPLE>即为RPC Photonics散射片数据集 bo>*fNqAIy 例如下所示: ek\ xx Sample name: EDF-C1-56 LmrfN?5 Merging data from file EDF-C1-56 0-0.txt 'F3f+YD Finished merging RPC data for sample EDF-C1-56 2;`1h[,-^ FRED formatted data file: D:\FRED\散射片数据\EDF-C1-56_FRED.txt dq6m>;` 4、 生成了FRED可识别的文件后,将散射模型导入到FRED里面 3S@7]Pg a. 创建一个新的散射库 {\"x3;3!6 b. 散射模型命名 sf
qL|8 c. 改变散射模型为“Tabulated BSDF”. 6vo;!V6 d. 在File框出右键选择“Replace With Data From a File”, 选择步骤三生成的数据文件(如EDF-C1-56_FRED.txt ) `2WFk8) F e. 切换为“Varies w/angle” 选项(假定所有的RPC Photonics datasets 数据有多个测试角度。 t#})Awy^R f. 在底部的对话框中,选择透射散射、反射停并且你需要终止入射光线, ,eW%{[g( g. 点击OK #U4F0BdA 5、 数据输入后,可点击“Plot”按钮验证BSDF模型及总的散射值 r'r%w#=`t BO;tCEV? nwe*BVp 脚本代码: UgNu`$m+ [A~xy'T '#Language "WWB-COM" %D34/=(X [wOn|)&
& Option Explicit 9';JXf$ ItVWO:x&v Sub Main 'RR~7h Id'-&tYG 'Cleanup B\=8_z ClearOutputWindow() . B9iLI Jb@V}Ul$ Print "Merging RPC Photonics BSDF Data Files" X*XZb F"= SetTextColor(255,0,0) ]L $\
# Print "Note: Script should be located in the same folder as the BSDF TXT files." |Nn)m Print "Note: Do not run this script multiple times without deleting the output file between executions." py!|\00} SetTextColor(0,0,0) )h4f\0 e0zq1XcZ 'Current directory of this script (should be the same as the text files being merged) 7M!I8C0!aO Dim cDir As String 2DtM20<> cDir = MacroDir$ & "\" XGWSdPJLr kQSy+q 'Array which will be populated with the list of files to be merged mt{nm[D!Xp Dim fList() As String, curFile As String oy=js - GetFileList( cDir, fList ) =,=A,kI[; Y'S%O/$ Print "" ,t?B+$E Print "Files found for merging:" ^z IW+: For Each curFile In fList &\WSQmtto Print Chr(9) & curFile [)M%cyQ Next 2B[X,rL.pX ?m}s4a 'Split the first text file name found to get the sample name. First file should be 0-0 measurement. xd?f2=dd~h Dim nameArray() As String, sampName As String dI(@ZV{ nameArray = Split(fList(0)," 0-0.txt") L-WT]&n_ sampName = nameArray(0) m@2QnA[4 Print "" Smn;(K Print "Sample name: " & Chr(9) & sampName Uw. `7b>B O7m(o:t x3 'Open an output file and write the FRED header data U0y% u Dim outFile As String rdP[<Y9 outFile = cDir & sampName & "_FRED.txt" 'Ym9;~(@R Open outFile For Output As #1 /sx&=[
D Print #1, "type bsdf_data" wr/"yQA] Print #1, "format angles=deg bsdf=value scale=1" HZC"nb}r4 {yHCXFWlS 'Loop the file list, skip the two header lines and write the remaining data to file P6-s0]-g Dim lineArray() As String, curLine As Long ghG**3xr For Each curFile In fList rNWw?_H-H( Print "Merging data from file " & curFile %9F([K ReadFile( cDir & curFile, lineArray ) u<tbbKM For curLine = 2 To UBound(lineArray) WUe{vV#S'0 Print #1, lineArray(curLine) +US!YU Next
!Y0Vid Next Iby\$~V !*dI|k 'Close the output file TOB-aAO Close #1 mI-]/: fP
1[[3i Print "Finished merging RPC data for sample " & sampName )Xz,j9GzJS Print "FRED formatted data file: " & Chr(9) & outFile QC
OM_$ y End Sub X1x#6
oi 2>xF){` 'Utility function to read the contents of a file into an array of strings. ArI2wM/v Function ReadFile(ByVal fileName As String, _ +s,=lL ByRef lineArray() As String) As Long =vCY?I$P [2!w_Iw' ReadFile = -1 w7.V6S$Ga Dim oFSO As Object VGy<")8D/ Set oFSO = CreateObject("Scripting.FileSystemObject") '6iEMg&3 Erase lineArray #C74z$ Z*]9E^ Dim fid As Long PB\(= If oFSO.fileexists( fileName ) Then }I+E\< fid = FreeFile() ;40/yl3r3[ Open fileName For Input As fid Ct <udO lineArray = Split(Input(LOF(fid), fid), vbCrLf) >reU#j Close fid )np:lL$$ End If m{Wu"
;e Set oFSO = Nothing `_Zg3_K.dS Return UBound( lineArray ) 36&e.3/# J9--tJ?[>o End Function Mlg0WrJ|2 .GPT!lDc Sub GetFileList( ByVal in_dir As String, _ Y|F9}hj( ByRef in_flist() As String ) XSwl Tg a8e6H30Sm 'Redimension the file list array ed{ -/l~j Erase in_flist r,8 [O T?CdZc. 'Tracks how many files are found 4<w.8rR:A Dim fCount As Long +<Nn~1 fCount = 0 zOAd~E
,h m\
'Recurse directory and search for text files 9IdA%RM~mH Dim f As String Ytp(aE: f = Dir$(in_dir & "*.txt") Fc)@,/R"v While f <> "" T@H^BGs ReDim Preserve in_flist(fCount) \_VA50 in_flist(fCount) = f `!3SF|x& fCount += 1 Fbr;{T
. f = Dir$() h9&0Z+zs Wend U/66L+1 ReDim Preserve in_flist(fCount-1) V# }!-Xj g]l''7G End Sub eH'av}
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