File: print.Rd

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r-cran-gmm 1.8-1
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\name{print}
\alias{print.gmm}
\alias{print.sysGmm}
\alias{print.gel}
\title{Printing a gmm or gel object}
\description{
 It is a printing method for \code{gmm} or \code{gel} objects.
}
\usage{
\method{print}{gmm}(x, digits = 5, ...)
\method{print}{gel}(x, digits = 5, ...)
\method{print}{sysGmm}(x, digits = 5, ...)
}
\arguments{
 \item{x}{An object of class \code{gmm} or \code{gel} returned by the function \code{\link{gmm}} or \code{\link{gel}}}
\item{digits}{The number of digits to be printed}
\item{...}{Other arguments when print is applied to an other class object}
}

\value{
It prints some results from the estimation like the coefficients and the value of the objective function.
}


\examples{

# GMM #

n = 500
phi<-c(.2,.7)
thet <- 0
sd <- .2
x <- matrix(arima.sim(n = n, list(order = c(2,0,1), ar = phi, ma = thet, sd = sd)), ncol = 1)
y <- x[7:n]
ym1 <- x[6:(n-1)]
ym2 <- x[5:(n-2)]

H <- cbind(x[4:(n-3)], x[3:(n-4)], x[2:(n-5)], x[1:(n-6)])
g <- y ~ ym1 + ym2
x <- H

res <- gmm(g, x)
print(res)

# GEL #

t0 <- c(0,.5,.5)
res <- gel(g,x,t0)
print(res)
}