Description Usage Arguments Value Author(s) See Also Examples
Compute the factor contributions to standard deviation (SD), Value-at-Risk (VaR), Expected Tail Loss or Expected Shortfall (ES) of the return of individual asset within a portfolio return of a portfolio based on Euler's theorem, given the fitted factor model.
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 | repRisk(object, ...)
## S3 method for class 'tsfm'
repRisk(object, weights = NULL, risk = c("Sd", "VaR", "ES"),
decomp = c("FPCR", "FCR", "FMCR"), digits = NULL, invert = FALSE,
nrowPrint = 20, p = 0.05, type = c("np", "normal"),
use = "pairwise.complete.obs", sliceby = c("factor", "asset"),
isPrint = TRUE, isPlot = FALSE, layout = NULL, stripText.cex = 1,
axis.cex = 1, portfolio.only = FALSE, ...)
## S3 method for class 'ffm'
repRisk(object, weights = NULL, risk = c("Sd", "VaR", "ES"),
decomp = c("FMCR", "FCR", "FPCR"), digits = NULL, invert = FALSE,
nrowPrint = 20, p = 0.05, type = c("np", "normal"),
sliceby = c("factor", "asset", "riskType"), isPrint = TRUE,
isPlot = FALSE, layout = NULL, stripText.cex = 1, axis.cex = 1,
portfolio.only = FALSE, ...)
|
object |
fit object of class |
... |
other optional arguments passed to |
weights |
a vector of weights of the assets in the portfolio, names of the vector should match with asset names. Default is NULL, in which case an equal weights will be used. |
risk |
one of 'Sd' (standard deviation), 'VaR' (Value-at-Risk) or 'ES' (Expected Tail Loss or Expected Shortfall for calculating risk decompositon. Default is 'Sd' |
decomp |
one of 'FMCR' (factor marginal contribution to risk), 'FCR' 'factor contribution to risk' or 'FPCR' (factor percent contribution to risk). |
digits |
digits of number in the resulting table. Default is NULL, in which case digtis = 3 will be used for decomp = ( 'FMCR', 'FCR'), digits = 1 will be used for decomp = 'FPCR'. Used only when isPrint = 'TRUE' |
invert |
a logical variable to change VaR/ES to positive number, default is False and will return positive values. |
nrowPrint |
a numerical value deciding number of assets/portfolio in result vector/table to print or plot |
p |
tail probability for calculation. Default is 0.05. |
type |
one of "np" (non-parametric) or "normal" for calculating VaR & Es. Default is "np". |
use |
an optional character string giving a method for computing factor covariances in the presence of missing values. This must be (an abbreviation of) one of the strings "everything", "all.obs", "complete.obs", "na.or.complete", or "pairwise.complete.obs". Default is "pairwise.complete.obs". |
sliceby |
one of 'factor' (slice/condition by factor) or 'asset' (slice/condition by asset) or 'riskType' Used only when isPlot = 'TRUE' |
isPrint |
logical variable to print numeric output or not. |
isPlot |
logical variable to generate plot or not. |
layout |
layout is a numeric vector of length 2 or 3 giving the number of columns, rows, and pages (optional) in a multipanel display. |
stripText.cex |
a number indicating the amount by which strip text in the plot(s) should be scaled relative to the default. 1=default, 1.5 is 50% larger, 0.5 is 50% smaller, etc. |
axis.cex |
a number indicating the amount by which axis in the plot(s) should be scaled relative to the default. 1=default, 1.5 is 50% larger, 0.5 is 50% smaller, etc. |
portfolio.only |
logical variable to choose if to calculate portfolio only decomposition, in which case multiple risk measures are allowed. |
A table containing
decomp = 'FMCR' |
(N + 1) * (K + 1) matrix of marginal contributions to risk of portfolio return as well assets return, with first row of values for the portfolio and the remaining rows for the assets in the portfolio, with (K + 1) columns containing values for the K risk factors and the residual respectively |
decomp = 'FCR' |
(N + 1) * (K + 2) matrix of component contributions to risk of portfolio return as well assets return, with first row of values for the portfolio and the remaining rows for the assets in the portfolio, with first column containing portfolio and asset risk values and remaining (K + 1) columns containing values for the K risk factors and the residual respectively |
decomp = 'FPCR' |
(N + 1) * (K + 1) matrix of percentage component contributions to risk of portfolio return as well assets return, with first row of values for the portfolio and the remaining rows for the assets in the portfolio, with (K + 1) columns containing values for the K risk factors and the residual respectively |
Where, K is the number of factors, N is the number of assets.
Douglas Martin, Lingjie Yi
fitTsfm
, fitFfm
for the different factor model fitting functions.
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 | # Time Series Factor Model
data(managers)
fit.macro <- factorAnalytics::fitTsfm(asset.names=colnames(managers[,(1:6)]),
factor.names=colnames(managers[,(7:9)]),
rf.name=colnames(managers[,10]), data=managers)
report <- repRisk(fit.macro, risk = "ES", decomp = 'FPCR',
nrowPrint = 10)
report
# plot
repRisk(fit.macro, risk = "ES", decomp = 'FPCR', isPrint = FALSE,
isPlot = TRUE)
# Fundamental Factor Model
data("stocks145scores6")
dat = stocks145scores6
dat$DATE = as.yearmon(dat$DATE)
dat = dat[dat$DATE >=as.yearmon("2008-01-01") &
dat$DATE <= as.yearmon("2012-12-31"),]
# Load long-only GMV weights for the return data
data("wtsStocks145GmvLo")
wtsStocks145GmvLo = round(wtsStocks145GmvLo,5)
# fit a fundamental factor model
fit.cross <- fitFfm(data = dat,
exposure.vars = c("SECTOR","ROE","BP","MOM121","SIZE","VOL121",
"EP"),date.var = "DATE", ret.var = "RETURN", asset.var = "TICKER",
fit.method="WLS", z.score = "crossSection")
repRisk(fit.cross, risk = "Sd", decomp = 'FCR', nrowPrint = 10,
digits = 4)
# get the factor contributions of risk
repRisk(fit.cross, wtsStocks145GmvLo, risk = "Sd", decomp = 'FPCR',
nrowPrint = 10)
# portfolio only decomposition
repRisk(fit.cross, wtsStocks145GmvLo, risk = c("VaR", "ES"), decomp = 'FPCR',
portfolio.only = TRUE)
# plot
repRisk(fit.cross, wtsStocks145GmvLo, risk = "Sd", decomp = 'FPCR',
isPrint = FALSE, nrowPrint = 15, isPlot = TRUE, layout = c(4,2))
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