order
Order of discrete-time filter System object
Syntax
Description
Examples
Determine Filter Order
Design a compensation decimator for a CIC decimator using the dsp.FilterCascade
object. Determine the order of the overall filter.
cicdecim = dsp.CICDecimator(DecimationFactor=6, ... NumSections=6); fs = 16e3; % Sampling frequency of input of compensation decimator fPass = 4e3; % Passband frequency fStop = 4.5e3; % Stopband frequency ciccomp = dsp.CICCompensationDecimator(cicdecim, ... DecimationFactor=2, ... PassbandFrequency=fPass, ... StopbandFrequency=fStop, ... SampleRate=fs); filtchain = dsp.FilterCascade(cicdecim, ciccomp); order(filtchain)
ans = 648
Input Arguments
sysobj
— Input filter
filter System object
Output Arguments
n
— Filter order
scalar
Filter order, returned as a scalar. The order depends on the filter structure and the reference double-precision floating-point coefficients.
Data Types: double
Version History
Introduced in R2011aR2024b: Support for dsp.VariableFIRDecimator
and dsp.VariableFIRInterpolator
Objects
Starting in R2024b, the order
analysis function supports the
dsp.VariableFIRDecimator
and dsp.VariableFIRInterpolator
objects.
R2024b: dsp.BiquadFilter
object warns
The dsp.BiquadFilter
object issues a warning and will be removed in a
future release. Use the dsp.SOSFilter
object
instead. For more information on how to replace your existing code, see the
Compatibility Considerations section in the dsp.BiquadFilter
reference page.
R2024b: Support for dsp.DCBlocker
object
Starting in R2024b, this function supports the dsp.DCBlocker
object.
R2023b: Support for dsp.ParallelFilter
and dsp.Delay
Objects
Starting in R2023b, the order
analysis function supports the
dsp.ParallelFilter
and the dsp.Delay
objects.
R2023b: dsp.BiquadFilter
object will be removed
The dsp.BiquadFilter
object will be removed in a future release. Use
the dsp.SOSFilter
object
instead.
See Also
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