Loading Case1_ParticleSettling/DeterministicCalibration/PSUADE/1_ResponseSurface/GPM/PSbuildRS_2.in 0 → 100644 +33 −0 Original line number Diff line number Diff line load ../../psData_OLH_n120_i6_o1_y2 # load data file ana_expert # psuade> analysis expert mode on printlevel 3 # psuade> printlevel set from 0 to 3 rscheck # Check for best data-fitted surrogate model 10 # Select Gaussian Process Model (GPM) Tong implementation as response surface method 1 # Quantity of interest no y # Perform cross-cross_validation 120 # Enter the number of groups to validate : (2 - 120) 120 fold cross-validation n # Random selection of leave-out groups ? (y or n) sys mv RSFA_CV_err.m R2_GPM10_120F_RSFA_CV_err.m # Rename the CV error file before next one sys mv RSFA_training_err.m R2_GPM10_RSFA_training_err.m # Rename the training error file before next one rs2 256 # Grid resolution ? (32 - 256) 2 # Available response surface tools: select Quadratic 6 # Enter the input for x axis (1 - 7) : 5 # Enter the input for y axis (1 - 7), not 1 : 2 y # Set other nominal values automatically ? (y or n) 1 # Enter output number (1 - 1) : n # Ymin and Ymax found = 2.037723e-01 3.421112e-01. Set lower threshold ? (y or n) : n # Set upper threshold ? (y or n) : n sys mv matlabrs2.m R2_GPM10_rs2_x6x5.m # Rename the response surface constructed rs2 256 # Grid resolution ? (32 - 256) 2 # Available response surface tools: select LINEAR 6 # Enter the input for x axis (1 - 7) : 3 # Enter the input for y axis (1 - 7), not 1 : 2 y # Set other nominal values automatically ? (y or n) 1 # Enter output number (1 - 3) : n # Ymin and Ymax found = 2.037723e-01 3.421112e-01. Set lower threshold ? (y or n) : n # Set upper threshold ? (y or n) : n sys mv matlabrs2.m R2_GPM10_rs2_x6x3.m # Rename the response surface constructed sys ls -alrt R2_GPM* # Check most one created after mv q Loading
Case1_ParticleSettling/DeterministicCalibration/PSUADE/1_ResponseSurface/GPM/PSbuildRS_2.in 0 → 100644 +33 −0 Original line number Diff line number Diff line load ../../psData_OLH_n120_i6_o1_y2 # load data file ana_expert # psuade> analysis expert mode on printlevel 3 # psuade> printlevel set from 0 to 3 rscheck # Check for best data-fitted surrogate model 10 # Select Gaussian Process Model (GPM) Tong implementation as response surface method 1 # Quantity of interest no y # Perform cross-cross_validation 120 # Enter the number of groups to validate : (2 - 120) 120 fold cross-validation n # Random selection of leave-out groups ? (y or n) sys mv RSFA_CV_err.m R2_GPM10_120F_RSFA_CV_err.m # Rename the CV error file before next one sys mv RSFA_training_err.m R2_GPM10_RSFA_training_err.m # Rename the training error file before next one rs2 256 # Grid resolution ? (32 - 256) 2 # Available response surface tools: select Quadratic 6 # Enter the input for x axis (1 - 7) : 5 # Enter the input for y axis (1 - 7), not 1 : 2 y # Set other nominal values automatically ? (y or n) 1 # Enter output number (1 - 1) : n # Ymin and Ymax found = 2.037723e-01 3.421112e-01. Set lower threshold ? (y or n) : n # Set upper threshold ? (y or n) : n sys mv matlabrs2.m R2_GPM10_rs2_x6x5.m # Rename the response surface constructed rs2 256 # Grid resolution ? (32 - 256) 2 # Available response surface tools: select LINEAR 6 # Enter the input for x axis (1 - 7) : 3 # Enter the input for y axis (1 - 7), not 1 : 2 y # Set other nominal values automatically ? (y or n) 1 # Enter output number (1 - 3) : n # Ymin and Ymax found = 2.037723e-01 3.421112e-01. Set lower threshold ? (y or n) : n # Set upper threshold ? (y or n) : n sys mv matlabrs2.m R2_GPM10_rs2_x6x3.m # Rename the response surface constructed sys ls -alrt R2_GPM* # Check most one created after mv q