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Genpop(gradient).r
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Genpop(gradient).r
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#######################################################################################
humgen.fct <- function(mpts,maxr,maxc)
{
curve=c(51.7,0.00007);
mtheo<-matrix(0,mpts,5);
#[,1]=row, [,2]=column, [,3]=age, [,4]=sd, [,5]theo of the gridcell
mtheo[,1] <- runif(mpts)*maxr
mtheo[,2] <- runif(mpts)*maxc
xv <- mtheo[,1]/maxr+mtheo[,2]/maxc
mtheo[,5] <- xv*40000
mtheo[,3] <- runif(mpts)*mtheo[,5]
mtheo[,4]=curve[1]*exp(curve[2]*mtheo[,3]);
mtheo[,3]=mtheo[,3]+rnorm(nrow(mtheo),0,mtheo[,4]);
for (i in 1:nrow(mtheo)){ mtheo[i,3]=max(mtheo[i,3],1)};
return(mtheo);
}
####
## ajout
humgencond <- function(rtheo,ind)
# pour un vecteur de valeurs theoriques rtheo,
# pour une suite d'indices ind,
# simulation d'ages et sd ages
{
curve=c(51.7,0.00007)
age <- runif(length(ind))*(-rtheo[ind])
sdage <- curve[1]*exp(curve[2]*age)
return(list(age=-age,sdage=sdage))
}
## END
##############################################
humgen.comp <- humgen.fct
humgencond.comp <- humgencond