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The resulting encoded binary codeword (mathbf {C}triangleq {C_{n}}_{n=1}^{N}in {0,1}^{N}) is interleaved by a random interleaver Π yielding the interleaved sequence X with X n =C Π(n).
The coded bits are then interleaved by a random interleaver as described in [6] to produce the interleaved codeword c ̃.
The two encoders are separated by a random interleaver.
The bit-streams obtained b h = ( b 1 h,..., b l h h ) are assembled to form the binary sequence b = (b1,..., b K ), which is, then, scrambled by a random interleaver π.
The two encoders are separated by a random interleaver of size N as shown in Figure 3, and the total rate of the SCCC encoder is k/n.Convolutional encoders have two main types: the non-systematic convolutional encoder, as shown in the example in Figure 4, where the functions of the generating codes are implemented in feed-forward structure and generate output parity bits.
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Now suppose that the coded bits sequence is interleaved using a random interleaver, which produces a bit sequence ć of length N c, which is transmitted.
The coded bits are interleaved with a random interleaver and passes through a multipath channel with an IR of length L. Figure 9 Rate R c =1/3 convolutional encoder.
In this paper, we build a random interleaver (RI) enhanced PDMA (RIePDMA) system by bringing the random interleaver into a PDMA system to further improve the overload of PDMA.
A random interleaver of a size 2,048 is therefore considered.
Ideally, a random interleaver will allow for maximum performance gains, but the NI-JED cannot be applied when interleaving is performed with a random interleaver.
Figure 2 Graphical models of (6) without (a) and with (b) a random interleaver.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com