About audio formats


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About audio formats

audio formats

Installations
Installation first. There is no perfect format. Different types of audio require different approaches.

Audio Formats

Second installation. It is impossible to do something good with poor quality.

Third installation. There are three approaches to comparing quality: the discriminating edge (heavyweights), the comforting edge (consumer audio), and the intelligibility edge.

Fourth installation. Disputes in a weight category are useless and are called “holivars”. The arguments in different weight classes are meaningless: “heavy is heavier than light” and “light is lighter than heavy.” Disputes (especially between heavyweights) can only take place with the support of the “blind method”.

A brief introduction
Bit rate is one of the most important metrics for measuring digital audio recordings. It is measured in kilobits per second (for short: kbps, just kilobits, kbps, kbps, kbps, etc.).

On the fingers: answer the question “how much memory occupies a second of audio”.

All kinds of transformations are already underway: there are eight bits in a byte, 1024 bits in a kilobit, 60 seconds in a minute, 60 minutes in an hour, and we arrive at the following empirical data:

bit rate 1400 = 1 hour takes 615 megabytes on disk
320 bitrate = 1 hour takes 141 megabytes on disk
bit rate 192 = 1 hour takes 84 megabytes on disk
bit rate 24 = 1 hour takes 11 megabytes on disk
Naturally, we all want to use disk space sparingly. This is where the format war begins. 11 MB is sixty times cheaper than 615 MB. Megabytes is the cost of storing audio recordings.

The price of storage can also be expressed in bills, dividing the cost of the disk by its capacity. For an archive of audio recordings, the storage price is far from being as critical as for an archive of video recordings.

Furthermore, the storage price can be conditionally expressed in man-hours, if the playback device has a much smaller capacity than your general archive of audio recordings. It takes time to regularly download new tracks to the device.

The storage price can also be expressed in square meters of work area. 500 audio CDs will take up a lot of space and require furniture solutions, but a small external hard drive fits in your pocket.

If there is a different price, then the question of quality arises: then we assume that the lowest bitrate has the lowest quality. So we come to the main question: where is the limit of reason, where is the ideal “price / quality” ratio.

The most approximate division of audio formats in descending order of average bitrate:

uncompressed audio
lossless compression
lossy compression

Uncompressed audio is the pure signal without conversion, “as is”, the equivalent of WAV or audio CD. Classic parameters: 1411 kbps, 44100 kHz sample rate, 16-bit audio.

Codec is an abbreviation of the words (KO der and DEC oder). An encoder is a program that packages a pure audio signal in the desired special format. A decoder is a program that converts a special format into a pure audio signal. In modern English, the two terms were transformed a bit: below code and below code, which corresponds to the direct Russian counterparts for coding and racing coding. And do not confuse encryption and encryption: these are two very different processes, although externally there is a lot of similarity.

For an ordinary person, only a player that can work with this format is required (that is, it has a decoder). The “encoder” itself is only required to “create” such files.

Lossless compression – Typically used for collectible audio material. It is generally believed that this format can be converted exactly to Audio CD.

Better is this compression:

Save disk space by about half
The file format assumes the storage of additional information (artist, album, track number, track name, etc.)
The compression formats themselves differ:

format openness and compression algorithms
player support
overhead encoding, decoding costs
compression ratio
The overhead costs are negligible for the average person and the compression ratio of the codecs differs slightly. Main actors: FLAC, APE, WAVPACK, ALAC.

Lossy Compression – Provides a much higher compression ratio by discarding unimportant audio details. The smaller the size of the file we are trying to compress, the more details we will need to discard. In addition to the disappearing details, technical artifacts also appear.


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What audio formats are there and how are they different?

What audio formats are there and how are they different?

Audio formats

When recording sound, the question arises which audio format to choose for disk storage. Almost all of today’s recording programs offer a multitude of options here, from highly compressed MP3 to uncompressed WAV files.

However, it’s easy to lose track in the jungle of different formats. We clarify what audio formats are available and what are the differences between the formats. FROM MP3 TO WAV, EVERYTHING YOU NEED TO KNOW ABOUT AUDIO FORMATS When you save your audio recordings digitally, they are in a specific format.

Audio Formats

Describes the structure of the file and contains all the audio signals. A distinction is generally made between two variants: uncompressed audio formats, which contain all the data, and compressed. With these, certain information is cut from the file. Compressed music formats can also be divided into lossless and lossy.

Uncompressed formats include the following: PCM (Raw Data) AIFF (Audio Interchange File Format) WAV CDDA (Compact Disc Digital Audio) The main compressed formats are: MP3 WMA (Windows Media Audio) / Lossless WMA AAC (Advanced Audio Coding) FLAC (Free Lossless Audio Codec)

This is what defines lossless formats. Uncompressed audio formats store all data in an audio file, including what the human ear cannot or can barely hear. This takes up a lot of storage space on the data carrier, but the sound quality is excellent. Lossless files are compressed to a certain extent to reduce file size.

However, this is done in such a way that no noticeable loss of quality can be detected. All original data is preserved, only the layout of the data is changed. These are lossy formats. One of the most popular lossy formats is the MP3 music format. Parts of the original file are removed to reduce storage space. Ideally, only information from the file that is not perceptible to humans is removed.

The higher the compression level, the smaller the file, but the quality also suffers with each further reduction. PROCESS YOUR AUDIO FILES EVEN MORE – SAVE STORAGE SPACE AND COMPRESS The most common uncompressed music formats are WAV and AIFF. If you record audio files on a digital audio workstation, you typically export them in one of these two formats and then process them.

If you want to save the data without any loss, but the original data must be preserved, first compress the files with an appropriate audio program in a lossless format, for example as a FLAC file. This takes up less space on the data carrier, so you can save a lot on external media and transmit the data.

Since all the information is still contained in the file and is simply unzipped when you open it, you can process these music files optimally: cutting, adding additional effects or soundtracks, or splitting the file, and all without the quality of the sound is affected. If you want to share your music and audio files, upload them to the network, send them by e-mail or if you want to save many files on a data medium, compression is essential.

You can also do this by using a corresponding audio program, some of which you can download for free from the Internet. Compression reduces the file size to a greater or lesser extent depending on the degree. At the same time, the audio file information that cannot be restored is lost. Be careful when compressing. Bit rates – this is what determines the quality of an audio file

Bit rate describes the amount of data that is processed in the music file per second. The higher the value, the higher the quality of the file. Uncompressed files typically have a bit rate of 1411 kilobytes. For example, if you convert a WAV file to MP3 format, you can set the bit rate, for example, to 192 or 320 Kb per second. THE DIFFERENT AUDIO FORMATS AT A GLANCE

What music format is suitable for what purpose and what are the sound differences?

Here you can find out when you should ideally use which format. Uncompressed formats: PCM, WAV PCM describes the raw data of an audio file. The format allows very high bit rates and therefore very high quality. The data is in the original and the sound corresponds to that of an audio CD. However, the PCM format consumes a lot of memory and cannot be played with all common audio programs that are designed for the MP3 format, for example. Therefore, you need a special program to process the flat file.