Programmer Guide/Command Reference/EVAL/smooth: Difference between revisions
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;Usage:<code>smooth(<var>x</var> {, <var>type</var>=0 {, <var>m</var>=1 {, <var>s</var>=1}}})</code> | ;Usage:<code>smooth(<var>x</var> {, <var>type</var>=0 {, <var>m</var>=1 {, <var>s</var>=1}}})</code> | ||
:;<var>x</var>:data vector | :;<var>x</var>:data vector | ||
:;<var>m</var>:smoothing length; 0 < ''m'' | :;<var>m</var>:smoothing length; 0 < ''m'' ≤ <code>nrow(''x'')/2</code> (default=1) | ||
:;<var>type</var>:selects the weighting coefficients (default=0) | :;<var>type</var>:selects the weighting coefficients (default=0) | ||
:;<var>s</var>:output step size; 0 < ''s'' | :;<var>s</var>:output step size; 0 < ''s'' ≤ <code>nrow(''x'')/2</code> (default=1) | ||
;Description: The smoothed value ''xs''[i] is computed from the data values ''x''[i-m] to ''x''[i+m]. The general form of the smoothing function is: | ;Description: The smoothed value ''xs''[i] is computed from the data values ''x''[i-m] to ''x''[i+m]. The general form of the smoothing function is: | ||
::<math>xs[i] = \frac{ \sum_{j=-m}^m{x[i+j].w[j]} }{ \sum_{j=-m}^m{w[j]} }</math> | ::<math>xs[i] = \frac{ \sum_{j=-m}^m{x[i+j].w[j]} }{ \sum_{j=-m}^m{w[j]} }</math> |
Revision as of 19:06, 21 April 2011
Apply smoothing to the vector x.
- Usage
smooth(x {, type=0 {, m=1 {, s=1}}})
- x
- data vector
- m
- smoothing length; 0 < m ≤
nrow(x)/2
(default=1) - type
- selects the weighting coefficients (default=0)
- s
- output step size; 0 < s ≤
nrow(x)/2
(default=1)
- Description
- The smoothed value xs[i] is computed from the data values x[i-m] to x[i+m]. The general form of the smoothing function is:
- The weighting coefficients w[i] depend on the value of the argument type
type w[j] 0 1 average 1 1 / (|j|+1) distance weighted average
- Result
- A vector r with
nrow(x)/s
elements. The value r[j] is set to the value xs[j*s] of the smoothed data vector. - See also
- optmm