public class NormalDistributionImpl extends AbstractContinuousDistribution implements NormalDistribution, java.io.Serializable
NormalDistribution.| Modifier and Type | Field and Description |
|---|---|
static double |
DEFAULT_INVERSE_ABSOLUTE_ACCURACY
Default inverse cumulative probability accuracy
|
| Constructor and Description |
|---|
NormalDistributionImpl()
Creates normal distribution with the mean equal to zero and standard
deviation equal to one.
|
NormalDistributionImpl(double mean,
double sd)
Create a normal distribution using the given mean and standard deviation.
|
NormalDistributionImpl(double mean,
double sd,
double inverseCumAccuracy)
Create a normal distribution using the given mean, standard deviation and
inverse cumulative distribution accuracy.
|
| Modifier and Type | Method and Description |
|---|---|
double |
cumulativeProbability(double x)
For this distribution, X, this method returns P(X <
x). |
double |
density(double x)
Returns the probability density for a particular point.
|
double |
density(java.lang.Double x)
Deprecated.
|
double |
getMean()
Access the mean.
|
double |
getNumericalVariance()
Returns the variance.
|
double |
getStandardDeviation()
Access the standard deviation.
|
double |
getSupportLowerBound()
Returns the lower bound of the support for the distribution.
|
double |
getSupportUpperBound()
Returns the upper bound of the support for the distribution.
|
double |
inverseCumulativeProbability(double p)
For this distribution, X, this method returns the critical point x, such
that P(X < x) =
p. |
double |
sample()
Generates a random value sampled from this distribution.
|
void |
setMean(double mean)
Deprecated.
as of 2.1 (class will become immutable in 3.0)
|
void |
setStandardDeviation(double sd)
Deprecated.
as of 2.1 (class will become immutable in 3.0)
|
reseedRandomGenerator, samplecumulativeProbabilityequals, getClass, hashCode, notify, notifyAll, toString, wait, wait, waitcumulativeProbabilitypublic static final double DEFAULT_INVERSE_ABSOLUTE_ACCURACY
public NormalDistributionImpl(double mean,
double sd)
mean - mean for this distributionsd - standard deviation for this distributionpublic NormalDistributionImpl(double mean,
double sd,
double inverseCumAccuracy)
mean - mean for this distributionsd - standard deviation for this distributioninverseCumAccuracy - inverse cumulative probability accuracypublic NormalDistributionImpl()
public double getMean()
getMean in interface NormalDistribution@Deprecated public void setMean(double mean)
setMean in interface NormalDistributionmean - for this distributionpublic double getStandardDeviation()
getStandardDeviation in interface NormalDistribution@Deprecated public void setStandardDeviation(double sd)
setStandardDeviation in interface NormalDistributionsd - standard deviation for this distributionjava.lang.IllegalArgumentException - if sd is not positive.@Deprecated public double density(java.lang.Double x)
density in interface HasDensity<java.lang.Double>density in interface NormalDistributionx - The point at which the density should be computed.public double density(double x)
density in class AbstractContinuousDistributionx - The point at which the density should be computed.public double cumulativeProbability(double x)
throws MathException
x).
If xis more than 40 standard deviations from the mean, 0 or 1 is returned,
as in these cases the actual value is within Double.MIN_VALUE of 0 or 1.cumulativeProbability in interface Distributionx - the value at which the CDF is evaluated.x.MathException - if the algorithm fails to convergepublic double inverseCumulativeProbability(double p)
throws MathException
p.
Returns Double.NEGATIVE_INFINITY for p=0 and
Double.POSITIVE_INFINITY for p=1.
inverseCumulativeProbability in interface ContinuousDistributioninverseCumulativeProbability in class AbstractContinuousDistributionp - the desired probabilitypMathException - if the inverse cumulative probability can not be
computed due to convergence or other numerical errors.java.lang.IllegalArgumentException - if p is not a valid
probability.public double sample()
throws MathException
sample in class AbstractContinuousDistributionMathException - if an error occurs generating the random valuepublic double getSupportLowerBound()
public double getSupportUpperBound()
public double getNumericalVariance()
s,
the variance is s^2Copyright © 2010 - 2023 Adobe. All Rights Reserved