Overload List
| # | Signature | Description |
|---|---|---|
| 1 | procedure RunningAverage(const Averaged: TMtx; const Data: TMtx; Count: Integer; Decay: Integer); | Result = running average on TMtx data |
| 2 | procedure RunningAverage(const Averaged: TVec; const Data: TVec; Count: Integer; Decay: Integer); | Result = running average |
Overload 1: procedure RunningAverage(const Averaged: TMtx; const Data: TMtx; Count: Integer; Decay: Integer);
Compute running average on TMtx data.
| # | Name | Type | Description |
|---|---|---|---|
| 1 | Averaged | TMtx | |
| 2 | Data | TMtx | |
| 3 | Count | Integer | |
| 4 | Decay | Integer |
Result: stored in self (calling object)
See Also: SignalUtils.ExpAverageFilter
Overload 2: procedure RunningAverage(const Averaged: TVec; const Data: TVec; Count: Integer; Decay: Integer);
Compute running average.
| # | Name | Type | Description |
|---|---|---|---|
| 1 | Averaged | TVec | |
| 2 | Data | TVec | |
| 3 | Count | Integer | |
| 4 | Decay | Integer |
Result: stored in self (calling object)
Remarks:
Compute running average of Data and place the result in Averaged. Count defines the Data block count already averaged and Decay defines exponential decay factor. If Decay is zero, the method will compute linear average. This can be usefull to save memory, if a very large amount of large Data blocks has to be averaged. If Decay is bigger then zero, then this routine is the vectorized version of the ExpAverageFilter routine.