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To reduce bit rate for representing phase spectral components of the sub-band FDLP residuals, we perform DPQ.
This threshold value can be adjusted using circuit-level techniques to reduce bit error rate (BER) to 10 4.
After divided into 8 bands, we calculate a maximum sample in each sub-band and reduce bit length of the samples.
To reduce bit rates, we apply an additional block, namely temporal masking (TM) which, together with DPQ, can efficiently control process of quantization.
For instance, in most wireless communication systems, increasing the signal to noise ratio to reduce bit error rate is the main focus; for GNSS the focus is to improve time-delay estimation to improve estimated position accuracy.
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A perceptual model, which performs temporal masking, is applied in WB-FDLP codec to reduce bit-rates.
(iii) TM: it is a psychoacoustic phenomenon implemented to significantly reduce bit-rates while maintaining the quality of the reconstructed audio.
Therefore, the motion vector encoding procedure in H.264 standard [1], which includes motion vector prediction, is adopted to encode the redundant motion vector to reduce bits.
The apartment was reduced bit by bit over the following years.
In this paper, we propose a technique to swap data between memory lines with goal of reducing bit flips.
Here too, the focus is on reducing bit rates by capitalizing on the properties of the human auditory system.
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