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qqghyp produces a generalized hyperbolic Q-Q plot of the values in y.
qqghyp
y
ppghyp produces a generalized hyperbolic P-P (percent-percent) or probability plot of the values in y.
ppghyp
Graphical parameters may be given as arguments to qqghyp, and ppghyp.
qqghyp(y, Theta, main = "Generalized Hyperbolic Q-Q Plot", xlab = "Theoretical Quantiles", ylab = "Sample Quantiles", plot.it = TRUE, line = TRUE, ...)ppghyp(y, Theta, main = "Generalized Hyperbolic P-P Plot", xlab = "Uniform Quantiles", ylab = "Probability-integral-transformed Data", plot.it = TRUE, line = TRUE, ...)
ppghyp(y, Theta, main = "Generalized Hyperbolic P-P Plot", xlab = "Uniform Quantiles", ylab = "Probability-integral-transformed Data", plot.it = TRUE, line = TRUE, ...)
For qqghyp and ppghyp, a list with components:
The x coordinates of the points that are to be plotted.
The y coordinates of the points that are to be plotted.
The data sample.
Parameters of the generalized hyperbolic distribution.
Plot labels.
Logical. Should the result be plotted?
Add line through origin with unit slope.
Further graphical parameters.
Wilk, M. B. and Gnanadesikan, R. (1968) Probability plotting methods for the analysis of data. Biometrika. 55, 1--17.
ppoints, dghyp.
ppoints
dghyp
par(mfrow = c(1,2)) y <- rghyp(200, c(2,2,1,2,2)) qqghyp(y, c(2,2,1,2,2),line = FALSE) abline(0, 1, col = 2) ppghyp(y, c(2,2,1,2,2))
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