A machine can change your voice.
A machine can change how a voice sounds.
A vocoder is a tool for sound. The name comes from combining the words "voice" and "encoder."
How does it work? First, the machine looks at a voice. It splits the voice into many different frequency bands. These are ranges of sound. The machine measures the power in each band. This set of measurements is called a modulator.
Next, the machine makes a new sound. It uses a carrier, which is a steady sound like noise. The modulator tells the carrier how to change. The carrier passes through filters to match the original voice. This recreates the speech.
This tool has many uses. It can hide voices for secure radio calls. It also helps save space on radio channels. Many people use it for music. It can make a person sound like a robot. 
A vocoder is a special tool for handling sound. Its name comes from combining the words "voice" and "encoder."
How does this tool actually work? First, the machine analyzes a person's speech. It divides the voice into many different frequency bands. These are different ranges of sound. The machine measures the level of sound in each band. This set of measurements is called a modulator. 
The history of the vocoder began many years ago. An engineer named Homer Dudley started this work in 1928. He worked at Bell Labs to develop these ideas. Dudley was granted patents for his work in 1939. He also showed a machine called a voder to the public. The voder was a voice operating demonstrator. It was shown at the New York World's Fair from 1939 to 1940. This machine could actually create speech using electronic parts. It used keys and a foot pedal to work.
There are many important facts about how these machines grew. In 1943, Bell Labs engineers built the SIGSALY system. This system used vocoders for secure talk during World War II. Later, the KY-9 THESEUS voice coder was made in 1953. It was much lighter than the older SIGSALY system. By 1961, the HY-2 voice coder was released. This was a 16-channel system used for secure speech. Today, many different digital methods are used instead. One common way is called linear predictive coding. This helps modern phones and radios work well.
You might recognize the sound of a vocoder in music. It can make a singer sound like a robot.
A vocoder is a specialized category of speech coding. The name is a portmanteau of the words "voice" and "encoder."
To understand the mechanism, we must look at how the human voice works. The voice consists of sounds from the glottis opening and closing. This creates an acoustic waveform with many harmonics. The vocal tract, which includes the nose, mouth, and throat, then filters this sound. This filtering creates fluctuations in harmonic content called formants. The vocoder analyzes speech by measuring how spectral energy distribution fluctuates over time. It divides the voice signal into many frequency bands. An envelope follower measures the signal level in each band simultaneously. This set of amplitude signals is called the modulator.
Recreating the speech requires reversing this analysis process. The vocoder uses an initial broadband noise called a carrier. This carrier can also be a sawtooth waveform. The carrier passes through a set of band-pass filters. The modulator controls the individual envelope amplitude levels of these filters in real time. This process maps the frequency components of the modulator onto the carrier. 
There are different ways to implement this technology. Since the late 1970s, most non-musical vocoders use linear prediction. In linear predictive coding (LPC), an all-pole IIR filter estimates the spectral envelope. This filter replaces the traditional band-pass filter bank. It can be more precise because the filter peaks are determined by the target signal. Another method is waveform-interpolative (WI) vocoding. This was developed at AT&T Bell Laboratories around 1995. Digital systems also use adaptive differential pulse-code modulation (ADPCM). This technique was developed at Bell Labs in 1973 by P. Cummiskey, Nikil S. Jayant, and James L. Flanagan.
The history of the vocoder began with Homer Dudley at Bell Labs. He started his development work in 1928. Dudley received patents for his inventions in 1939. He introduced the "voder," or voice operating demonstrator, at the 1939–1940 New York World's Fair. The voder was a complex machine used for speech synthesis. It used an electronic oscillator and a noise generator. An operator used pressure-sensitive keys and a foot pedal to control it. This allowed a skilled person to produce recognizable speech.
Vocoders have played significant roles in history and security. In 1943, Bell Labs engineers built the SIGSALY system. This system provided encrypted voice communications during World War II. Later models focused on reducing size and weight. The KY-9 THESEUS voice coder arrived in 1953. It used solid-state logic to reduce weight from the heavy SIGSALY system. By 1961, the HY-2 voice coder was released as a 16-channel system. Modern systems are much more efficient. A good vocoder can simulate a voice with as little as 2.4 kbit/s of data. This is impressive compared to standard recording rates.
In the world of music, the vocoder is a popular electronic instrument.
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