The Benefits of Lossless Audio Formats


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The Benefits of Lossless Audio Formats

Lossless Audio Formats
Lossless Audio Formats
Lossless Audio Formats
Lossless Audio Formats

Lossless Audio Formats Explained

As an audiophile, I always strive to achieve the highest possible quality of sound. Lossless audio formats such as FLAC, ALAC, and WAV are my go-to choices when it comes to digital music. These formats use audio compression algorithms that preserve all the original audio data while reducing the file size. This means that the music you listen to sounds exactly as the artist intended it, without any loss of quality.
When I first discovered lossless audio formats, I was blown away by the difference in sound quality compared to lossy formats like MP3. The music was clearer, more detailed, and had a wider dynamic range. The benefits of lossless audio formats are not just limited to the listening experience, they also have practical benefits. Lossless files take up less storage space on your device than uncompressed audio files like WAV, and can be easily streamed over the internet without compromising quality.

As the famous musician David Byrne once said, “Lossless audio formats offer an uncompromising listening experience that allows you to hear every nuance of a recording. It’s like hearing the music for the first time.”

The Advantages of FLAC and ALAC

FLAC and ALAC are two of the most popular lossless audio formats. They are both open-source and free to use, which means they have a wide range of support across different devices and software. FLAC has become the de facto standard for lossless audio on the internet, while ALAC is the preferred format for Apple devices.
One of the biggest advantages of FLAC and ALAC is their ability to handle high-resolution audio. These formats can handle audio at up to 24-bit/192kHz, which is significantly higher than the 16-bit/44.1kHz standard of CD-quality audio. This means that you can listen to your favorite music with even greater detail and clarity.

In addition, FLAC and ALAC both have robust error correction capabilities. This means that if a file is corrupted during download or transfer, the audio data can still be recovered without any loss of quality. This is a major advantage over lossy formats like MP3, which cannot recover from data errors.

The Benefits of WAV

WAV is a lossless audio format that has been around since the early days of digital audio. It is the standard format for audio CDs, and is widely used in professional audio production. One of the main benefits of WAV is its compatibility with a wide range of hardware and software.
WAV files are uncompressed, which means that they retain all the original audio data. This makes them ideal for situations where maximum audio quality is required, such as mastering and archiving. In addition, WAV files can be edited without any loss of quality, making them the preferred format for audio engineers and producers.

As the great music producer Rick Rubin once said, “WAV files are the gold standard for audio quality. They offer the most accurate representation of the original recording, and are essential for anyone serious about music production.”

Final Words

In conclusion, lossless audio formats offer a superior listening experience compared to lossy formats like MP3. Whether you choose FLAC, ALAC, or WAV, you can be sure that you are getting the best possible sound quality. As an audiophile, I highly recommend using lossless audio formats for your music collection. And if you’re looking for a reliable and efficient way to normalize and convert your audio files, MP4Gain is the perfect solution.


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THE MOST COMMON FORMATS FOR MUSIC AND OTHER AUDIO FILES, AND HOW THEY ARE RELATED TO EACH OTHER

THE MOST COMMON FORMATS FOR MUSIC AND OTHER AUDIO FILES, AND HOW THEY ARE RELATED TO EACH OTHER

Music Formats

 

And for the direct competitors of the universal MP3 format, they can count on a lot today.

Music Formats

Due to continuing inconsistencies in home storage of the WAV format, it was eventually discontinued. But for professional studios, he says, the basics of the job. Especially when recording live vocals or instruments. Just convert the recorded material from WAV to MP3 at the final stage.

music format

However, music can be represented in some other popular formats nowadays. For example, many times (especially the Internet) they use these data types like OGG, AIFF, AMR, etc. But the real competitor of MP3 has become the newest and best audio FLAC etc. Of course, for MP3 you can convert all parameters to the maximum, but the playback quality of FLAC represents much higher. Also, it is a single file and the separation occurs directly on the track due to the player or startup software. In other words, listeners see each track individually, but can switch between playback tracks. For the MP3 format, this also seems possible to merge multiple tracks through it, thus creating a single file. But here it is in this version fast switching between tracks will not be possible (normal fast forward should be used, that’s all).

However, not everything is bad. The fact that music or audiobooks are all popular formats today allows them to be easily converted, even keeping the original parameters of the audio material. Based on this, and for sound processing and conversion and audio editors, almost all programs call converters. Any program of this type (MP3 editor or converter) detects the original and final type of audio files, is unambiguous and can produce direct and reverse transformations. Let’s explain this specific example.

WAVE THEORY AUDIO EDITOR FOR MP3 FILES
Many types of software are used in audio processing today. First, look at the narrow application of so-called audio editors. The most prominent representatives of these can be called giants Sony Audio Forge, Sintrillium Cool Editing Pro, which was later acquired by Adobe and renamed Audition, Acoustica Mixcraft, ACID Pro and many others.

mp3 editor

The principle on which they operate is that, for convenience, all MP3 audio programs have a typical waveform, as originally used for WAV files. This method determines the appearance and opportunity enough to edit any type of conventional audio material in WAV format. Other than that, the fact that you can do basic copy, cut, paste, etc. E., it’s just a matter of getting the frequency characteristics and bitrate changes, not to mention using a lot of extra effects that plug into VSTs via DirectX or a generic host bridge studio thing.

In its simplest form, the conversion can be done using the standard file menu, which contains the line “Save As…” (Save As…) or the export function present in MP3 format. Thus, all the process is reduced to just the final selection of the format (MP3 here as an example) and activation of the recording mode. In this case the conversion will be done automatically saving the current configuration parameters and the frequency characteristics. I don’t like the original version? ?Nothing is easier than changing the format to MP3, pre-specified with higher settings. However, one thing needs to be considered here: if the raw material is of such poor quality that special remediation or even professional tools will not work for audio it is necessary to use Repairs here, the intervention of various filters, etc. D. For the layman, it will cause great difficulties.

As is clear, there is absolutely no difference between the audiobooks we are dealing with: MP3, music or just recorded voice or noise. By the way, audiobooks are supposed to have a much lower sound quality by default. This is understandable, since the file has to take up minimal space and, in general, the perceived sound characteristics of speech are not that important. Finally, is this a professional recording of a particular set of albums?

However, if you use some standard operations, even without specific knowledge, it’s fine to achieve good results, especially since there are such built-in templates, based on any application for specific operations. Of course, it will be very difficult for the first time to achieve a perfect sound, but if you study the plan and understand how it works, it will work like clockwork, and as a result, it will take a lot of time.

What music file format is recommended? Part 2

What music file format is recommended? Part 2

AUDIO FORMATS

Opus is a new audio compression format developed by the IETF and standardized by RFC6716 in 2012. There is very little hardware and software supported, but at low bit rates of 128 kbps or less, it appears to be the strongest sound quality with compression with lost.

audio formats

Vorbis is a free audio file format developed by Xiph.org. It seems to be used on Youtube too. Since the standard bit rate is 112 kbps, the sound quality at a low bit rate appears to be good.

WMA is a standard Windows audio compression method developed by Microsoft. If the bit rate is 160 kbps or less, it exceeds the MP3 upper limit frequency. However, the size will be a little larger.

AAL (ATRAC Advanced Lossless) is a lossless compressed version of ATRAC mentioned above. According to Sony, it can be compressed to about half the size of the data without losing any music information on the CD, but it actually seems to vary considerably depending on the sound source.

As the name implies, Apple Lossless (ALAC) is Apple’s lossless compression audio codec. Used in iTunes, etc.

FLAC is an audio file format developed and distributed as free open source software. It seems to be the most popular in lossless compression.

Monkey’s Audio is an audio format that compresses PCM losslessly without degrading sound quality. It is so named because it is used in music playing software called Monkey’s Audio. The characteristic is that it does not fit the name and the compression rate is high.

TAK is a high-speed, high-compression, lossless compression audio encoder. It has the same level of compression as Monkey’s Audio, but it’s pretty crazy.

TTA is a free real-time lossless compression audio encoder / decoder. Like TAK, it’s too manic so I wouldn’t use it.

WMA Lossless is a lossless compressed version of WMA mentioned above.

Equalizer Image
AIFF is an uncompressed audio file format developed by Apple. It seems to be the Windows WAV. It seems to have been used on Macintosh (Mac) for a long time.

WAV (WAVE) is a format for describing audio data developed by Microsoft and IBM. This is what happens when you convert a CD (Linear PCM) into an uncompressed file in Windows.

Also, the sound quality of lossy compressed music file formats is almost the same at 192 kbps bit rates. If it is 160 kbps or less, I am wondering if other compression formats are slightly better than MP3. In this case, it is better to check the music player software. Sound quality is exactly the same for lossless and uncompressed music file formats. Lossless compression will have issues with compression ratio and playback load.

I want to read it together
What is free high-quality music player software for Windows?
After all, what music file format is recommended?
Image of listening to music with a portable music player
I’ve mentioned it so far, but I recommend MP3 or WAV (AIFF). The reason is as follows.

Due to the large capacity of hard drives and flash memory, lossy compressed music file formats do not need to have a bit rate lower than 192 kbps.
The compression ratio of the lossless music file format is currently 60 to 70% maximum, so taking into account the encoding time and effort and loading during playback, the file format of Uncompressed music is sufficient for lossless compression.
I don’t think I can distinguish between 192kbps MP3 and WAV, so I can’t help but worry about the compression format.
MP3 and WAV have many compatible hardware and software.

What music file format is recommended?

What music file format is recommended?

audio format

There are many types of music file formats, so it is difficult to know which one is recommended.

AUDIO FORMAT

I have only used MP3 and WAV due to their confusion, so I don’t really know about the new music file formats that are increasing year after year. So, I took a quick look at the existing music file formats based on the information from the internet. Let’s make a list of types and extensions so that you can easily understand them later.

* The target is a music file format that can be converted from a CD (linear PCM).


* The format can be replaced with the term codec and the extension can be replaced with the term file format. Simply put, a codec is a device or software that can encode (encode) and decode (decode) data in both directions using one encoding method. A file format is an information device like a computer. It is the storage format of the file used in.

* The bit rate for lossy compression is 192 kbps.

* The corresponding items indicate the amount of hardware and software that the music file format supports. ◎ Many, ○ Many, ▲ Normal, △ Less, × Very few.

Currently, lossless compression is emerging as a compression format in addition to lossy compression. Irreversible compression (lossy compression) is a data compression method in which the data before compression and the data after compression do not completely match, and reversible compression (lossless compression) is the data before and after compression. It is a data compression method that exactly matches the data.

In other words, lossy compression is a poor sound quality compression method because it adds a reduction in the amount of data, and lossless compression is a good sound quality compression method because it does not reduce the amount of data. . They are all the same in the sense that they aim for high sound quality with the smallest possible size.

Now, I’m sure there are music file formats that you already know, but let’s briefly explain each one.

Mixer Image
AAC is a music file format standardized in 1997 (approved in 1999). Standardized in order to obtain high sound quality and high compression that exceeds MP3. If the bit rate is 160 kbps or less, it exceeds the MP3 upper limit frequency.

ATRAC is a voice data compression technology developed by Sony since 1992. If the bit rate is less than 128 kbps, it is above the upper frequency limit of MP3.

HE-AAC is a music file format standardized in 2003. By incorporating SBR technology into the aforementioned AAC, the playback band has been expanded and the sound quality and compression efficiency at low bit rates (128 kbps or less) have been vastly improved.

* SBR (Spectral Band Replication) is a technology for audio compression and encoding, which aims to strengthen the conventional encoding method and increase the compression rate.

MP3 is the oldest music file format standardized in 1991 (approved in 1993). Since it is old, it has a high penetration rate and there is a large amount of supported hardware and software.

Audio formats.

Audio formats.

Audio Formats

There are many types of voice file formats, as well as image file formats.

Audio Files

Since the digital audio files are easy to copy, the illegal copy and distribution of music files has become a problem these days.

As explained in what analog data is, the mechanism of digital audio files is that analog signals become digital data and are saved.

Explaining in detail the conversion method, to convert an analogue to digital waveform, it is necessary to perform a job called “sampling” that measures (record) the sound waveform at regular intervals, and is the sampling cycle. The sampling frequency is called (sampling frequency).

The sampling frequency represents the number of samples per second and is in Hz. In other words, it is a unit that expresses how many times the sound is measured and recorded per second, and the greater the value, the more faithful the original and greater sound becomes the quality of the sound. However, the amount of data will increase proportionally.

The sampling frequency of a typical music CD is 44.1 k Hz. However, even if the sampling frequency is increased, there are sounds and frequency bands that can not really be recorded, so some classical music enthusiasts love expensive analogue equipment.

In addition, it is not only the sampling frequency, which affects the quality of the sound, but also the “sampling bit” that indicates the strength (volume) of the sound (16 bits are 65,535, 24 bits are 16,777,215). (Express) and “Number of channels” (number of sound lines recorded as stereo, monaural and 5.1 channels) also have an effect. The higher the value, the greater the sound quality.

Another factor that greatly affects sound quality is the bit rate. The bit rate represents the amount of data to be recorded per second and the unit is “BPS”.

In other words, the higher the bit rate, the more information can be stored, which results in a higher sound quality. As will be described in detail below, in the MP3 file format, 128 K BPS is the minimum bit rate that can be heard.

However, there is “constant bit rate” and “variable bit rate” in the bit rate. The constant bit rate is the same bit rate that is fixed from the beginning to the end of the voice, and the variable bit rate increases or decreases the bit rate according to the amount of voice information.

In other words, the bit rate is high for clauses with multiple voices and the bit rate is low for simple low voice clauses. You can reduce the total size of the file by choosing a variable bit rate.

This is the information contained in the digitized data of analog audio signals.

However, digitized data can not be used as. Just converting this data into an arbitrary file format and saving them, it will be possible to use them with multimedia devices and application software that admit that format.

The storage format of said data

file format

Is named. A file format is a file format with an extension.

Then, to save the data in a file format, it is necessary to transform (encode: encoding) the data according to that format. (For coding, see What is a character code?)

A dedicated program is used to codify the data, but said coding program is

Codec (codec)
Is named. In other words, the gross data obtained by converting analog signals into digital data are processed by a codec to market them as a file format.

Therefore, there are many types of codecs and coding methods for each type of codec.

Most current codecs are programs that compress and encode data when creating a file and decompress (decompress) data by playing a file. In general terms, codecs are used to compress and decompress data. It refers to a compression method program of this type.

Compare audio formats like M4A and MP3, AC3, WMA.

Compare audio formats like M4A and MP3, AC3, WMA.

Audio File Formats

Apart from M4A, there are many other active audio formats. For example, the popular MP3, AC3, WMA, OGG, etc.

Audio Formats

 

What is the difference between M4A and MP3, AC3, WMA? What is better about M4A than MP3, AC3, WMA and OGG? Then read the next sentence to see the battle in audio compression format.

M4A and MP3: Both M4A (MPEG 4 audio) and MP3 (MPEG3 audio) are audio compression formats developed by the Motion Picture Experts Group (MPEG). Next, I will introduce the differences between M4A MP3 in terms of file size, sound quality and compatibility.

Sound Quality: The M4A format, known as Apple Lossless Encoder, aims to replace MP3 with a new standard for audio compression. However, when comparing M4A MP3 for sound quality, M4A is better. Generally speaking, it is recommended to store music with M4A audio at 192 kbps bit rate for good sound quality and small file size.

File size: In terms of file size, M4A is often believed to have superior sound quality than MP3 when encoded at the same bit rate. For example, with 128-bit AAC (M4A), a 4 minute song would be 3.8 MB. To maintain the same sound quality with MP3, it is necessary to encode at a rate of approximately 192 bits. Then the file size will exceed 3.8MB.

Compatibility: Currently, M4A is only used on PC, iPod and other Apple devices and is not as popular as MP3. In contrast, all computers, music players, and mobile phones can play MP3 files.

Tip: If sound quality is a priority, neither M4A nor MP4 is the best option. It is advisable to choose the uncompressed WAV format. However, the size of the WAV file is about 10 times that of M4A and MP3. Therefore, WAV, which takes up too much space when creating a music collection, is not the best format.

M4A, MP3 and WMA: WMA A lossy compression codec developed by Microsoft. Like other new formats, M4A and WMA have higher compression efficiency and better sound quality than MP3. Sound quality is particularly good at low bit rates. As a result, WMA works well for low-bandwidth video streaming. Therefore, songs purchased from online music stores Napster, Musixmatch, and Wal-Mart must be stored in WMA. However, WMA cannot be played on Apple iPod, which is a shame.

Comparison of audio compression formats

Audio compression format

Sampling rate

Bit rate

stereo

M4A

8-192 kHz

8-529 kbit / s (stereo)

Yes: Dual, Mid / Side, Strength, Parametric

MP3

8, 11.025, 12, 16, 22.05, 24, 32, 44.1, 48 kHz

8, 16, 24, 32, 40, 48, 56, 64, 80, 96, 112, 128, 144, 160, 192, 224, 256, 320 kbit / s

Yes: Dual, Mid / Side, Strength

AC3

32, 44.1, 48 kHz

32? 640 kbit / s

Yes

WMA

8, 11.025, 16, 22.05, 32, 44.1, 48 kHz

8? 768 kbit / s

Yes

FLAC

1-655 350 Hz

8, 16, 20, 24, 32

Yes

A THE C

1? 384000 Hz

16, 20, 24, 32

Yes

What is the difference between AVCHD and MP4? Which is better, image quality or recording size

Audio and video analogic & digital

Audio and video analogic & digital

Lossless and Lossy audio compression

The appearance of multimedia systems, of course, brought about revolutionary changes in areas such as education, computer training, in many areas of professional activity, science, art, computer games, etc. But, you must agree, it is impossible to imagine the modern. multimedia systems without sound or video. In this work, I would like to dwell on the consideration of the fundamental differences in the representation of digital signals from analog, the characteristics of digital audio and video information, their compression algorithms (compression).

Lossy, and Lossless compression

2. Differences between the digital representation of analog signals.

The traditional analog representation of signals is based on the similarity (similarity) of electrical signals (current and voltage changes) with the original signals represented by them (sound pressure, temperature, speed, etc.), as well as on the similarity of electrical signals. signal forms at various points in the transmission or amplification path. The shape of the electrical curve that describes (also called transfer) the original signal is as close as possible to the shape of the curve of this signal.

Such a representation is the most accurate, however, the slightest distortion of the shape of the electrical carrier signal will inevitably involve the same distortion of the shape and signal of the carrier. In terms of information theory, the amount of information in the carrier signal is exactly equal to the amount of information in the original signal, and the electrical representation does not contain redundancy that could protect the carried signal from distortion during storage, transmission. and amplification.

The digital representation of electrical signals is designed to add redundancy to avoid unwanted interference. For this, serious restrictions are imposed on the carrier electrical signal: its amplitude can take only two limit values: 0 and 1.

In this case, the entire zone of possible amplitudes is divided into three zones: the lower one represents zero values, the upper one, individual, and the middle one is prohibited, only interferences can enter. Therefore, any interference, the amplitude of which is less than half the amplitude of the carrier signal, does not affect the correct transmission of the values ​​0 and 1. Interference with a higher amplitude also does not affect whether the duration of the interference pulse is significantly shorter than the duration of the information pulse, and a filter is installed at the pulse noise input of the receiver.

The digital signal formed in this way can carry any useful information that is encoded in the form of a sequence of bits: zeros and ones; Electrical and sound signals are a special case of such information. Here, the amount of information in the digital carrier signal is much greater than in the original encoded signal, so that the carrier signal has some redundancy with respect to the original, and any distortion in the waveform of the carrier signal, which it still retains the ability of the receiver to correctly distinguish between zeros and ones, it does not affect the reliability of the signal transmitted by this information signal. However, in the case of significant interference, the shape of the signal can become so distorted that the precise transmission of the information being carried becomes impossible: errors appear in it, which, with a simple coding method, the receiver does not you can only correct, but also detect. To further increase the resistance of a digital signal to interference and distortion, two types of redundant digital coding are used: verification codes (EDC – Error Detection Code) and correction (ECC – Error Correction Code) . Digital encoding is simply adding extra bits to the original information and / or converting the original bit string into a longer string and other structure. EDC allows you to simply detect the fact of an error: a distortion or loss of a useful one or the appearance of a false digit, but the information transferred in this case is also distorted; ECC allows you to immediately correct detected errors, keeping the information that is transferred unchanged.

Each type of EDC / ECC has its own capacity limit to detect and correct errors, after which undetected errors and distortions of the information being transferred start anew. An increase in the amount of EDC / ECC relative to the amount of initial information generally increases the detection and correction capabilities of these codes.

Like EDC, the popular cyclic redundancy code CRC (Cyclic Redundancy Check), whose essence is the complex mixture of the initial information in the block and the formation of short binary words, whose bits have u

Audio compression algorithms for streaming purposes

Audio compression algorithms for streaming purposes.

Lossy, and Lossless compression

The problem of transmitting the necessary number of audio channels through a network of limited capacity forces us to resort to audio compression.

Lossy and Lossless ata compresion in digital audio

Despite the use of modern digital technologies, compression negatively affects sound quality and causes additional delay in signal transmission.

Currently, there are two fundamentally different approaches to compressing audio signals. This article will provide a general comparison between these two different compression principles. Also presented are graphs of the frequency response (amplitude frequency characteristic) of the sound sample in its original uncompressed form and after one cycle of encoding and decoding using MPEG Layer II and Enhanced apt-X.

Algorithms like MPEG and AAC use encoding using a psychoacoustic model of sound perception. Another approach is time encoding using Adaptive Differential PCM (ADPCM) in algorithms like Enhanced apt-X.

Linear PCM audio
Before compression, the audio is generally digitized in linear PCM format at 32 kHz, 44.1 or 48 kHz with a resolution of 16 or 24 bits.

The analog signal will be digitized in uncompressed digital PCM. The digital inputs of the codecs use oversampling to ensure conversion without timing issues. The uncompressed PCM signal is our benchmark for comparing compressed audio files.

MPEG Layer ll compression
MPEG 1 Layer ll is a widely used format. This is a typical example of a psychoacoustic perception coding algorithm that analyzes the incoming signal and compares it to a theoretical model to determine what frequency and what time domain information can be lost. The need to analyze the audio signal results in a mandatory delay, typically greater than 30 ms.

In theory, high compression ratios can be achieved, but even with relatively low compression, MPEG can seriously degrade audio quality. In Fig. 2 shows the frequency response after one pass of MPEG encoding of the source file.

Be aware of frequencies that are lost or distorted compared to original PCM audio.

Compression Enhanced Apt-X
Enhanced apt-X uses ADPCM audio processing technology. The signal is divided into four frequency bands that can be processed at a quarter of the original sample rate using a variable bit rate and variable quantization step. Since all processing is based on the time domain method, there is no delay other than the actual processing time required.

As a result, a 4: 1 compression ratio preserves the entire frequency content of the original signal with a coding delay of less than 3 ms. Frequency response graph in Fig. 3 shows the result of one pass encoding / decoding using Enhanced apt-X at 256 kbps and illustrates the high fidelity of Enhanced apt-X compared to the original uncompressed signal.

How Enhanced apt-X Works
The improved apt-X encoding algorithm passes the original PCM data through a specially designed two-stage Q-mirror filter to divide the signal into four subbands and reduce the clock frequency to 1/4 of the original clock frequency. The quantization procedure consists of processing four sub-signals to reduce each signal from 16 bits to 7 bits in subband 1, 4 bits in subband 2, 3 bits in subband 3 and 2 in subband 4.

The inverse quantizer and prediction scheme uses the above values ​​to predict the size of the next signal. This value is compared to the actual signal and the “difference” is measured. The encoder transmits this measured “difference” signal to the decoder. Each subband is processed in parallel and the output of the string quantizer and predictor is encoded with a predetermined resolution. The processing output of the four subbands is multiplexed into a single 16- or 24-bit enhanced apt-X signal. Then additional data and sync data is added to it for streaming.

What is digital audio data compression?

What is digital audio data compression?

lossless and lossy compression

It could be said that there are two methods with which it is possible to compress the data in the case of digital audio.

lossless lossy compression

On the one hand, the method known as lossy compression is intended to reduce psychoacoustic redundancy and the other method is to reduce statistical redundancy. And this is known as lossless compression.

Lossless compression

Many people wonder how lossless compression can be achieved.
The Huffman code takes into account the probability that levels of different magnitudes will appear, for example, the most probable values ​​to appear frequently are assigned shorter codes and, on the other hand, the values ​​whose probability of appearance is small are assigned they use longer code words.

If we think about it, we will realize that by replacing the signal values ​​that will appear very frequently with shorter words, this will save us space but it does not imply any loss of quality because no information is being discarded.

If we put an example perhaps very simplified to be able to explain this method, we could imagine that we are going to compress a text. Now suppose this text contains some words that may be repeated very frequently.
For this explanation suppose that our text contains the word “statistically” many times and suppose that we substitute 3 characters for it: xx ÷.
So in each place where the word “statistically” should appear, we will replace it with the characters “xx ÷” And if this word appears enough times we will reduce the size of the text.
If we do this with each of the words that will appear several times, we will be able to make a significant reduction of the text without having to discard any information.

Therefore, when we rebuild or decompress our file, we will obtain a file exactly the same as the initial one, without any loss.

The other method where if there is a loss what is sought is to discard what is audio information the ear cannot distinguish, for example in the masking effect.
This masking what happens in our ears due to the imperfection of the human ear, supposes that two sounds do occur at approximately the same moment And these sounds have a close frequency But one of them has a much higher volume, the ear will only perceive the one who has higher volume and the one with the lowest volume will not perceive. Therefore, it can be discarded and the human ear will not perceive the difference.

This type of compression does use the technique of discarding information, which is why the resulting file has some information loss.

In general terms, today those systems that act without loss of information are being highly valued.

Lossless format – what is it?

Lossless format – what is it?

Flac format

High quality music in Lossless format.

FLAC

If you take a normal audio CD with analog sound, burn it in WAV format for uncompressed sound, then compress WAV using lossless codec, then unzip the resulting audio file into WAV and burn the result to a blank CD, you can get two completely identical audio CDs.

The advantage of lossless for storing an audio collection is that the quality of the recordings is much higher than that of lossy codecs and they take up less space than uncompressed audio. It is true that lossy files are smaller than lossless music files. Most modern playback programs understand the lossless format. Those programs that cannot play it can easily learn it using the lossless plugin. What are lossless audio formats?

Lossless audio formats

A true music lover is unlikely to be satisfied with the sound of music recorded in Ogg Vorbis or MP3 compression formats. Of course, if you listen to audio recordings on home audio equipment, sound defects cannot be heard with your ear, but if you try to play a compressed file on high-quality Hi-Fi equipment, you will immediately find sound defects. . Of course, creating a collection of quality music on CD or vinyl is not easy. There is a reasonable alternative to this path for lovers of high-quality sound – lossless music. It can be stored on your PC in a format that allows you to keep the original music settings unchanged, even if compression is applied. In this way it simultaneously solves the problems of high-quality music and its compact storage, since the audio equipment for listening (headphones, speakers, amplifiers) is quite affordable.