Programmer Guide/Command Reference/EVAL/log2lin: Difference between revisions

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::*log2lin: ''r''<sub>i,j</sub> = ''ref'' * 10 ^ (''x''<sub>i,j</sub> / ''fac'')
::*log2lin: ''r''<sub>i,j</sub> = ''ref'' * 10 ^ (''x''<sub>i,j</sub> / ''fac'')


;See also: [[Programmer_Guide/Command_Reference/EVAL/npow2|log]], [[Programmer_Guide/Command_Reference/EVAL/exp|exp]], [[Programmer_Guide/Command_Reference/EVAL/fft|fft]], [[Programmer_Guide/Command_Reference/EVAL/cr2len|cr2len]],  
;See also: [[Programmer_Guide/Command_Reference/EVAL/log|log]], [[Programmer_Guide/Command_Reference/EVAL/exp|exp]], [[Programmer_Guide/Command_Reference/EVAL/fft|fft]], [[Programmer_Guide/Command_Reference/EVAL/cr2len|cr2len]],  


Example:
Example:

Revision as of 14:40, 6 April 2011

Convert the elements of x to logarithmic values (e.g. dB) and vice versa.

Usage
lin2log(x {, ref {, fac}})
log2lin(x {, ref {, fac}})
x
a scalar, vector or matrix
ref
the reference value; must be a positive number (default=1)
fac
the factor; must be a positive number (default=20)
Result
The result r has the same type as x and contains the converted elements of x.
  • lin2log: ri,j = fac * log10(xi,j / ref)
  • log2lin: ri,j = ref * 10 ^ (xi,j / fac)
See also
log, exp, fft, cr2len,

Example:

// #spe is a vector containing a complex spectrum
#aref := set '20e-6' // reference value: 20 micro Pascal
#logamp := eval lin2log(cr2len($#spe), $#aref) // the log. amplitude spectrum in dB

<function list>

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