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What is dynamic range in music? – Easierwithpractice.com

    https://easierwithpractice.com/what-is-dynamic-range-in-music/#:~:text=Dynamic%20range%20compression%20%28DRC%29%20or%20simply%20compression%20is,live%20sound%20reinforcement%20and%20in%20some%20instrument%20amplifiers.
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Digital Dynamic Range Compressor Design— A …

    http://www.eecs.qmul.ac.uk/~josh/documents/2012/GiannoulisMassbergReiss-dynamicrangecompression-JAES2012.pdf
    Dynamic Range Compression (DRC) is the process of mapping the dynamic range of an audio signal to a smaller range [1-2], i.e., reducing the signal level of the higher peaks while leaving the quieter parts untreated. DRC is usedextensivelyinaudiorecording,productionwork,noise reduction,broadcasting,andliveperformanceapplications.

Dynamic range compression (audio)

    https://findatwiki.com/Dynamic_range_compression_(audio)
    Dynamic range compression (DRC) or simply compression is an audio signal processing operation that reduces the volume of loud sounds or amplifies quiet sounds, thus reducing or compressing an audio signal's dynamic range.Compression is commonly used in sound recording and reproduction, broadcasting, live sound reinforcement and in some instrument amplifiers.

Digital Audio Compression - Columbia University

    https://www.ee.columbia.edu/~dpwe/papers/Pan93-acomp.pdf
    ratio, or equivalently the dynamic range, of the quantized amplitude by roughly 6 decibels (dB). The typical number of bits per sample used for digital audio ranges from 8 to 16. The dynamic range ca-pability of these representations thus ranges from 48 to 96 dB, respectively. To put these ranges into perspective, if 0 dB represents the weakest audi-

The Complete Guide to Audio Compression – Icon …

    https://iconcollective.edu/audio-compression/
    Audio compression reduces the dynamic range of an audio signal. Dynamic range is the difference between the loudest and quietest parts of a waveform. Compression reduces this range by attenuating the louder signals and boosting the quieter signals. As a result, the loudest and softest parts are closer in volume, creating a more balanced sound.

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