plot.seas {seasonal} | R Documentation |
Seasonal Adjustment Plots
Description
Functions to graphically analyze a "seas"
object.
Usage
## S3 method for class 'seas'
plot(
x,
outliers = TRUE,
trend = FALSE,
main = "Original and Adjusted Series",
xlab = "Time",
ylab = "",
transform = c("none", "PC", "PCY"),
...
)
residplot(
x,
outliers = TRUE,
main = "residuals of regARIMA",
xlab = "Time",
ylab = "",
...
)
## S3 method for class 'seas'
monthplot(x, choice = c("seasonal", "irregular"), main, ...)
Arguments
x |
an object of class |
outliers |
logical, should the outliers be drawn. |
trend |
logical, should the trend be drawn. |
main |
character string, title of the graph. |
xlab |
character string, title for the x axis. |
ylab |
character string, title for the y axis. |
transform |
character string, optionally transform the data to period to period |
... |
further arguments passed to the plotting functions. |
choice |
character string, |
Details
plot
calls the plot method for class "seas"
. It plots the
adjusted and unadjusted series, as well as the outliers. Optionally draws the
trend series.
residplot
plots the residuals and the outliers.
monthplot
calls the monthplot method for class "seas"
. It plot
the seasonal and SI component periodwise. Despite its name, monthplot
can be used for series of all frequencies.
Value
All plot functions return a plot as their side effect.
References
Vignette with a more detailed description: http://www.seasonal.website/seasonal.html
Comprehensive list of R examples from the X-13ARIMA-SEATS manual: http://www.seasonal.website/examples.html
Official X-13ARIMA-SEATS manual: https://www2.census.gov/software/x-13arima-seats/x13as/windows/documentation/docx13as.pdf
See Also
seas()
, for the main function.
udg()
, for diagnostical statistics.
Examples
m <- seas(AirPassengers)
plot(m)
plot(m, outliers = FALSE)
plot(m, trend = TRUE)
residplot(m)
residplot(m, outliers = FALSE)
monthplot(m)
# use standard R functions to analyze "seas" models
pacf(resid(m))
spectrum(diff(resid(m)))
plot(density(resid(m)))
qqnorm(resid(m))