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The Spectrogram Settings allow to precisely set all display parameters (be careful to always keep an eye to the computing time and resources...), in order to have the best environment for Spectral Repair, for instance, and you'll find other options in the Preferences window. The latter will allow you to authorize the software, set the audio card and options as well as all the key shortcuts (with preset saving, bravo!). |
RX can read WAV, Broadcast WAV, AIFF, MP3 and WMA mono or stereo audio files. The error window displays: 'Currently only mono...' A marketing trick or the promise of a future multichannel capability? |
Thans to the Declipper module, these repairs of digital clipping (as well as analog) can be automated. The choice between Single- and Multi-Band processing is material dependent: you won't find precise examples in the manual, because they would be irrelevant. You have to make your own tests. Be careful when you using the Multi mode, otherwise it'll add unpleasant artifacts to the final result. |
The Automatic mode has three parameters: processing Quality (High, Med or Low), Sensitivity and Maximum Click Width, in ms. You can start selecting a click in the main display, then check its length in the Values display, then adjust the Max Click Width setting and the Sensitivity. Rule#1: to achieve better results, you'd have to proceed by steps, to run several passes better than trying to remove everything at once. Rule#2: using Preview with the Output Clicks Only function allows to listen to the will-be removed events and to adjust the settings. This monitoring function is also available in the other Modules. |
wavelet thresholding, convolution, etc. iZotope has developed its own technology, and doesn't give a lot of details on it. However, it doesn't really matter, as the interface is user-friendly, and that is the main thing. The most common artifacts after denoise processing are phase issues, comb filtering effect, added noises (sounding aquatic- or pipe-esque) or modulation of the broadband noise. It's always hard to totally remove noises without slightly (or strongly) damage the signal, and you often have to reach a compromise between total cleaning and respect of the intelligibility and musicality, at last with the suites I've been using til now: Waves Restoration, Sound Soap Pro and TC Electronic Restoration. By the way, a review of the recent WaveArts Master Restoration suite is underway. Denoiser uses two modes, Simple and Advanced. A Train button is added to Preview, Apply, Batch and Compare. It allows to 'learn' the sonic signature of an unwanted signal, preferably selected in an area where it is isolated. RX can also automatically learn the best portion of a signal when you select AutoTrain. Three algorithms are available, A which works in real time, B and C which are offline. C is the best, therefore the slowest: 15 minutes to process a 1 minute file... The Simple mode is very... simple. A noise reduction setting (0 to 40 dB) and a Smoothing parameter, which reduces the artifacts that sometimes may occur. The Advanced mode logically offers more parameters: there's the equivalent of Smoothing (Musical Noise), but noise reduction is divided into two set of parameters (threshold and reduction), one for Tonal reduction (one or more constant frequencies), the other for the Broadband noise. Residual Whitening is the last setting, that forces the suppressed noisefloor curve to be close to whitenoise. Let's use again our 'Lung' example. We have selected the broadband noise 'fingerprint' at the beginning of the file, then adjusted threshold and reduction while monitoring what will be removed (Output Noise Only ticked): Noise has gone away. Here is another example, a voice coming from an interview, with a lot of background noise. Noise 'fingerprint' again, a few adjustments, and voilà:
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