Encoder of parallel-convolution LDPC code based on precoding and its fast encoding method
An LDPC code and precoding technology, applied in the field of communication, can solve problems such as high complexity and long coding delay
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Embodiment 1
[0063] refer to image 3 , the present embodiment is (756, 3, 6) encoder design and encoding process of parallel convolutional LDPC code, and optimizes the first check matrix H by designing the interleaver in a pseudo-random manner π .
[0064] 1. The structure and function of the encoder
[0065] The encoder includes an information grouping unit, an information precoding unit, a convolutional encoding unit and an information recombination unit. The composition and functions of each unit are as follows:
[0066] (1) Information grouping unit, used to realize information flow serial-to-parallel conversion, that is, to convert an information flow into M=3 parallel sub-information flows, each sub-information flow length L=126, and all 3 sub-information flows obtained are respectively sent into The corresponding memory is used to perform the precoding operation of the information precoding unit.
[0067] (2) Information precoding unit, used to realize the first parity check mat...
Embodiment 2
[0093] refer to Figure 5 , the present embodiment is (3060,3,6) encoder design and encoding process of parallel convolutional LDPC code, and optimizes the first parity check matrix H by randomly designing an interleaver π .
[0094] 1. The structure and function of the encoder
[0095] The encoder includes an information grouping unit, an information precoding unit, a convolutional encoding unit and an information recombination unit. The composition and functions of each unit are as follows:
[0096] (1) The information grouping unit transforms one information stream into M=3 parallel sub-information streams, and the length of each sub-information stream is L=510.
[0097] (2) Information precoding unit, including memory, interleaver and modulo 2 adder, wherein the number of memory is equal to the number of parallel sub-information flow, namely equal to 3, each memory corresponds to 3 random interleavers, modulo 2 addition The number of devices is equal to 3. The first in...
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