Update Dataset_study.rmd
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				@ -170,6 +170,58 @@ ks.test(tbe2,pexp,lambda2, alternative="two.sided")
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The Kolmogorov-Smirnov test rejects the hypothesis that the time between events sequence is following an exponential distribution. 
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					The Kolmogorov-Smirnov test rejects the hypothesis that the time between events sequence is following an exponential distribution. 
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					\section{Proposition de simulation sous H1}
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					Je reprends votre code pour faire un data set :
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					```{r}
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					# Etape 1 : simu Poisson process sous H0
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					ppH0=PoissonProcess(lambda1,Ti)
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					ppH0
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					length(ppH0)
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					# Etape 2 : creation d'un segment sous H1
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					tau= 2.5 # longeur de l'intervalle modifie, a fortiori tau < Ti
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					ppH1.segt=PoissonProcess(lambda2,tau)
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					ppH1.segt
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					length(ppH1.segt)
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					# Etape 3 : insertion du segment dans la sequence H0
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					dbt=runif(1,0,Ti-tau) # choix de l'indice de  temps ou va commencer le segment modifie
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					dbt
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					ppH1.repo=dbt+ppH1.segt # repositionnement des observations dans le temps
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					ppH1.repo
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					ppH0_avant=ppH0[which(ppH0<ppH1.repo[1])]
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					ppH0_apres=ppH0[which(ppH0>ppH1.repo[length(ppH1.repo)])]
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					ppH1=c(ppH0_avant,ppH1.repo,ppH0_apres)
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					ppH1
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					length(ppH1)
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					#time between events 
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					n1=length(ppH1)
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					tbe1=ppH1[2:n1]-ppH1[1:n1-1]
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					n0=length(ppH0)
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					tbe0=ppH0[2:n0]-ppH0[1:n0-1]
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					tbe1=c(0,tbe1)
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					tbe1
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					list1=data.frame(ProcessusPoissonH1=ppH1,
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					         TimeBetweenEventH1=tbe1)
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					list1
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					tbe0=c(0,tbe0)
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					tbe0
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					list0=data.frame(ProcessusPoissonH0=ppH0,
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					         TimeBetweenEventH0=tbe0)
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					list0
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					```
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Import data of rainfall in France every 3 hours.
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					Import data of rainfall in France every 3 hours.
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```{r}
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					```{r}
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Rain_Dataset = read.csv("data/synop.202202.csv", sep = ";")
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					Rain_Dataset = read.csv("data/synop.202202.csv", sep = ";")
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