8.2 Differential Coding (assuming there is no quantization or coding error, i.e. K[n] =x[n]) 8.2.1 Use differential coding with the predictor [n] = [n 1] to encode the sequence 10 11 12 11 12 13 12 11 8.2.2 Use the same predictor to encode another sequence 10 -10 8 -7 8-87-7 8.2.3 Find a better linear predictor for this second sequence in 8.2.2.and perform the differential coding again. (Hint: your objective is to make sure the coded sequence has generally low amplitudes.)

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8.2 Differential Coding (assuming there is no quantization or coding error, i.e.
[n] =x[n])
8.2.1 Use differential coding with the predictor |[n] =&[n- 1] to encode the sequence
10 11 12 11 12 13 12 11
8.2.2 Use the same predictor to encode another sequence
10 -10 8 -7 8 -8 7 -7
8.2.3 Find a better linear predictor for this second sequence in 8.2.2.and perform the
differential coding again. (Hint: your objective is to make sure the coded sequence has
generally low amplitudes.)
Transcribed Image Text:8.2 Differential Coding (assuming there is no quantization or coding error, i.e. [n] =x[n]) 8.2.1 Use differential coding with the predictor |[n] =&[n- 1] to encode the sequence 10 11 12 11 12 13 12 11 8.2.2 Use the same predictor to encode another sequence 10 -10 8 -7 8 -8 7 -7 8.2.3 Find a better linear predictor for this second sequence in 8.2.2.and perform the differential coding again. (Hint: your objective is to make sure the coded sequence has generally low amplitudes.)
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