Dual Microphone Array Free

 

 

 

 

 

 

Dual Microphone Array Crack + [Updated-2022]

Single microphone used to record the source signal and
another independent microphone used to record a reference signal.
Then, based on these two audio
recordings, the two microphones are mounted. And
the difference of signals between the two
microphones are analyzed to eliminate the noise.
Operating principles of dual microphone array system:
■ On a receiver side, the receiver can be configured with a signal source and
two microphones. The microphones are controlled with the microphone
array to obtain near and far-field microphones output signal. Then, it
passes through the summering device. Finally, the summering device can
be configured with a particular method for its realization. For instance
by changing the attenuation level of the summering device, the sound
level of the noise can be changed. This results the balancing between
suppression of the external noise and preservation of the received
speech.
■ The typical equipment including a dual microphones configuration is
sealed to prevent the leakage of the speech signal.
■ The process includes but not limited to:
■ Determining the reference microphone output.
■ Blocking the signal from microphone 1.
■ Receiving the speech from microphone 2.
■ Receiving the noise from microphone 1.
■ Combining the microphone output signals in such a way as to
add the signal contributions while subtracting the noise
contributions.
■ Finally, the microphone output signal is subtracted from the
reference microphone output to obtain the enhanced speech.
Processing Mode:
■ During the configuration phase, the user should have a set
down configuration file for a particular processing mode.
This phase is needed to achieve:
■ Preset the working environment of the microphone
array;
■ Setting the level of microphone 1 output signal;
■ Setting the level of microphone 2 output signal;
■ Setting the level of reference microphone output signal;
■ Limiting the memory of microphone array;
■ Setting the number of noise reduction channels.
■ Limiting the setting of Maximum noise reduction (NR);
■ Limiting the setting of Minimum noise reduction (NR);
■ Limiting the setting of Maximum speech distortion (SFx).
In addition to that, the microphone array
arrangement needs to be configured with:

Dual Microphone Array Crack + [32|64bit]

The device consists of 2 (two) independent sources of audio output: one for each microphone of the configuration.
The program has 2 input parameters that can be:
■ „INPUT_FREQUENCY“;
■ „INPUT_SAMPLING_FREQUENCY“;

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Dual Microphone Array Full Version

■ Hardware implementation of speech enhancement techniques
■ Using dual microphones can cause reverberations on
■ target audio signal
■ Forward-reverse correlation of target signal and masker
■ space is needed to be implemented.
■ Dynamic of target signal and masker is detected and
■ it’s bandwidth is reduced before correlation.
■ Here target signal is to be corrected by noise and ambient
■ noise.
■ Here bandwidth of reference signal and masker is
■ reduced before doing correlation.
■ Here reference signal is to be corrected by noise and
■ ambient noise.
■ Noise and target masker are zero-mean Gaussian white
■ noises.
■ Input of microphones array is in phasor form
■ so no additional delay is used.
Processing stages:
■ Feedforward masking;
■ Forward-reverse correlation;
■ Forward-reverse bias correction;
■ Admittance;
■ Noise suppression;
■ Dynamic range compression.
Input features (dual microphone array):
■ Temporal delay and gain can be set by user;
■ Gain can be set for backward masking;
■ Analog – digital conversion can be set;
■ Inputs (time or frequency) can be set to listen speech with
■ ambient noise;
■ Gain of input can be set for listening ambient noise only;
■ Input can be set to listening speaker only;
■ Input can be set to listen ambient noise and speaker;
■ Input channels can be switched.
Output features (MAS):
■ Gain can be set for different situation.
■ Gain can be set for masking speech;
■ Masking time and masking level can be set.
■ Gain can be set for speech enhancement of ambient noise;
■ Gain can be set for speech enhancement of stationary noise;
■ Gain can be set for speech enhancement of wind noise;
■ Gain can be set for speech enhancement of room noises;
■ Gain can be set for speech enhancement of the target
■ speech;
■ Direction of speech can be inverted;

What’s New In?

■ Mic A and Mic B are used for getting input of sound source signal.
■ Signal amplification is performed and output signal is processed by equalization algorithm.
■ We have a powerful signal processing algorithm.
■ Fast adaptation to changing of external noises is performed.
■ During noise cancellation, we work only with stationary noise.
■ Due to assumption of nonstationary noise, we can suppress noise up to 18 db, but not above than 18 db.
■ We work in real time.
■ We also can split the speech stream into syllabic frame.
■ Noise Suppression algorithm is MIM (Multiple-Implementation Multiple-Measurement) adaptive filter based on QR decomposition.
■ MIM (Multiple-Implementation Multiple-Measurement) adaptive noise suppression based on QR decomposition.
■ Candidate method of noise suppression, based on EMD (Emphasis Mode Decomposition) method of speech analysis, with weighted reconstruction.
■ The algorithm is based on a combination of MML (Multiple-Measurement Linear Least-Squares) and NLM (Non-Linear Least-Squares) techniques.
■ Noise suppression is applied to specific frequency bands.
■ Noise suppression is applied for 50 frequency bands from 10-3500 Hz.
■ The sampling frequency 16-bit input signal.
■ Output signal is 26 kHz.
■ Equation for the noise suppression model is (Equation 1):
■ It is possible to reduce the noise (Equation 2):
■ Dimension of matrices (Equation 3):
■ Matrices are formed from the filter.
■ Size of the matrix (Equation 4):
■ Weightings (Equation 5):
■ For one channel of noise suppression:
■ The matrix size is n x n where n = 50
■ n = 10
■ n = 20
■ n = 30
■ For two channels of noise suppression:
■ n = n = 10
■ For three channels of noise suppression:
■ n = n = 10, 20
■ For four channels of noise suppression:
■ n = n = 10, 20, 30

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System Requirements For Dual Microphone Array:

RAM: 1GB or more
GPU: Intel HD 3000 or higher, NVIDIA GeForce GTX 650 or higher
CPU: Intel Core i5 2500K or AMD equivalent
Hard Drive: 20GB+ of free disk space
Operating System: Windows 7/Vista
Internet: Broadband Internet connection
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