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25 Residue format partitions each vector in the vector bundle into chunks,
26 classifies each chunk, encodes the chunk classifications and finally
28 defined for each selected classification.
38 \item Each vector is partitioned into multiple equal sized chunks
46 \item Each partition in each vector has a classification number that
48 decode that partition. The classification numbers of each partition
52 is also partitioned into chunks. The integer elements of each scalar
60 codebook design dictates that each vector is encoded as the additive
62 VQ codebook. Thus, each residue value potentially accumulates values
64 a partition is the same in each pass, thus the classification codeword
168 each vector that is actually coded; it implements akin to a bandpass
205 Finally, we read in a list of book numbers, each corresponding to
425 representing all output channels, rather than a vector for each
426 channel. After decode, deinterleave the vector into independent vectors, one for each output channel. That is:
430 \item Rather than performing format 1 decode to produce \emph{ch} vectors of length \emph{n} each, call format 1 decode to produce a single vector \varname{[v]} of length \emph{ch*n}.
431 \item Post decode: Deinterleave the single vector \varname{[v]} returned by format 1 decode as described above into \emph{ch} independent vectors, one for each outputchannel, according to: