Single mode quasi-cyclic LDPC decoder using modified belief propagation
Monica V. Mankar, Abha Patil, Gajendra M. Asutkar
Abstract
Monica V. Mankar, Abha Patil, Gajendra M. Asutkar
Abstract
Low Density Parity Check codes (LDPC) have shown good error correcting performance which enables efficient and reliable communication. A subclass of LDPC codes known as quasi-cyclic LDPC codes are used whose parity check matrices consists of circulant permutation matrices. QC-LDPC codes require less memory as compared to LDPC codes. This paper presents a low complexity quasi-cyclic low density parity check (QC-LDPC) decoder. QC-LDPC codes require less memory as compared to LDPC codes. Partially parallel, low complexity decoder architecture has been designed for single-mode decoding. This decoder is modeled in Verilog, synthesized and performed place and route for the design using Xilinx ISE 12.1.
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Low Density Parity Check codes (LDPC) have shown good error correcting performance which enables efficient and reliable communication. A subclass of LDPC codes known as quasi-cyclic LDPC codes are used whose parity check matrices consists of circulant permutation matrices. QC-LDPC codes require less memory as compared to LDPC codes. This paper presents a low complexity quasi-cyclic low density parity check (QC-LDPC) decoder. QC-LDPC codes require less memory as compared to LDPC codes. Partially parallel, low complexity decoder architecture has been designed for single-mode decoding. This decoder is modeled in Verilog, synthesized and performed place and route for the design using Xilinx ISE 12.1.
Key concepts: Low-density parity-check code, Computer science, Serial concatenated convolutional codes, Decoding methods, Forward error correction, Concatenated error correction code, Tornado code, Belief propagation