ErrorCrit_RMSE.R 4.1 KB
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ErrorCrit_RMSE <- function(InputsCrit, OutputsModel, warnings = TRUE, verbose = TRUE) {
    
    
    ##Arguments_check________________________________
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    if (!inherits(InputsCrit, "InputsCrit")) {
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      stop("InputsCrit must be of class 'InputsCrit' \n")
      return(NULL)
    }
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    if (!inherits(OutputsModel, "OutputsModel")) {
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      stop("OutputsModel must be of class 'OutputsModel' \n")
      return(NULL)
    }
    
    
    ##Initialisation_________________________________
    CritName <- NA
    if (InputsCrit$transfo == "") {
      CritName <- "RMSE[Q]"
    }
    if (InputsCrit$transfo == "sqrt") {
      CritName <- "RMSE[sqrt(Q)]"
    }
    if (InputsCrit$transfo == "log") {
      CritName <- "RMSE[log(Q)]"
    }
    if (InputsCrit$transfo == "inv") {
      CritName <- "RMSE[1/Q]"
    }
    if (InputsCrit$transfo == "sort") {
      CritName <- "RMSE[sort(Q)]"
    }
    CritValue       <- NA
    CritBestValue   <- +1
    Multiplier      <- +1
    ### must be equal to -1 or +1 only
    
    
    ##Data_preparation_______________________________
    VarObs <- InputsCrit$Qobs
    VarObs[!InputsCrit$BoolCrit] <- NA
    VarSim <- OutputsModel$Qsim
    VarSim[!InputsCrit$BoolCrit] <- NA
    
    ##Data_transformation
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    if (InputsCrit$transfo %in% c("log", "inv") & is.null(InputsCrit$epsilon) & warnings) {
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      if (any(VarObs %in% 0)) {
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        warning("zeroes detected in Qobs: the corresponding time-steps will be excluded from the criteria computation if the epsilon argument of 'CreateInputsCrit' = NULL")
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      }
      if (any(VarSim %in% 0)) {
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        warning("zeroes detected in Qsim: the corresponding time-steps will be excluded from the criteria computation if the epsilon argument of 'CreateInputsCrit' = NULL")
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      }  
    }
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    if ("epsilon" %in% names(InputsCrit) & !is.null(InputsCrit$epsilon)) {
      VarObs <- VarObs + InputsCrit$epsilon
      VarSim <- VarSim + InputsCrit$epsilon
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    }
    if (InputsCrit$transfo == "sqrt") {
      VarObs <- sqrt(VarObs)
      VarSim <- sqrt(VarSim)
    }
    if (InputsCrit$transfo == "log") {
      VarObs <- log(VarObs)
      VarSim <- log(VarSim)
      VarSim[VarSim      < -1e100] <- NA
    }
    if (InputsCrit$transfo == "inv") {
      VarObs <- 1 / VarObs
      VarSim <- 1 / VarSim
      VarSim[abs(VarSim) > 1e+100] <- NA
    }
    if (InputsCrit$transfo == "sort") {
      VarSim[is.na(VarObs)] <- NA
      VarSim <- sort(VarSim, na.last = TRUE)
      VarObs <- sort(VarObs, na.last = TRUE)
      InputsCrit$BoolCrit <-
        sort(InputsCrit$BoolCrit, decreasing = TRUE)
    }
    
    ##TS_ignore
    TS_ignore <- !is.finite(VarObs) | !is.finite(VarSim) | !InputsCrit$BoolCrit
    Ind_TS_ignore <- which(TS_ignore)
    if (length(Ind_TS_ignore) == 0) {
      Ind_TS_ignore <- NULL
    }
    if (sum(!TS_ignore) == 0) {
      OutputsCrit <- list(NA)
      names(OutputsCrit) <- c("CritValue")
      return(OutputsCrit)
    }
    if (inherits(OutputsModel, "hourly")) {
      WarningTS <- 365
    }
    if (inherits(OutputsModel, "daily")) {
      WarningTS <- 365
    }
    if (inherits(OutputsModel, "monthly")) {
      WarningTS <-  12
    }
    if (inherits(OutputsModel, "yearly")) {
      WarningTS <-   3
    }
    if (sum(!TS_ignore) < WarningTS & warnings) {
      warning("\t criterion computed on less than ", WarningTS, " time-steps")
    }
    
    
    ##ErrorCrit______________________________________
    Numer <- sum((VarSim - VarObs)^2, na.rm = TRUE)
    Denom <- sum(!is.na(VarObs))
    
    if (Numer == 0) {
      Crit <- 0
    } else {
      Crit <- sqrt(Numer / Denom)
    }
    if (is.numeric(Crit) & is.finite(Crit)) {
      CritValue <- Crit
    }
    
    
    ##Verbose______________________________________
    if (verbose) {
      message("Crit. ", CritName, " = ", sprintf("%.4f", CritValue))
    }
    
    
    ##Output_________________________________________
    OutputsCrit <- list(CritValue       = CritValue,
                        CritName        = CritName,
                        CritBestValue   = CritBestValue,
                        Multiplier      = Multiplier,
                        Ind_notcomputed = Ind_TS_ignore
    )
    return(OutputsCrit)
    
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  }