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The six sequences are encoded using H.264 encoder with two sequence structures, namely, IBBPBB and IPPP.
These videos were compressed using an H.264/AVC video encoder with different encoding characteristics to obtain six VQLs, as presented in Table 6.
The input source bits u is first encoded by a channel encoder with code rate R.
Data bits are first encoded using a convolutional encoder with code rate 1/2 and constraint length 9.
The data of each user are independently encoded using a turbo encoder with quadrature permutation polynomial (QPP -based interleaving [29].
After randomization, each FEC block is encoded by the binary (171, 133) convolutional encoder with a constraint length of 7. Before encoding, the encoder memory is initialized with the last six data bits of the FEC block to be encoded.
The WZ frames quality control architecture is presented in Figure 5: it gets input from an H.264/AVC Intra encoder with quality control used to encode the key frames (see Section 5).
In the transmitter, at first, the data bits are encoded by a 1/2 rate convolutional encoder with the constraint length of 5 and the generators of 23 and 35 in octal notation.
Each data block is separately encoded by the binary (171, 133) convolutional encoder with memory m = 6.
On the other hand, a TBCC encoder with rate 1/5 is used to encode the control information.
We observe that, in terms of achievable rate region, the informed encoder with GDPC can assist the uninformed encoders.
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