2006Unpublished venueRequires access

Design of low-density parity-check codes using linear programming for modulation and detection

Yi Yang, Changqing Xu, Zhang Haibin

Open publisher page 1 citations

Abstract

LDPC-MIMO system provides great capacity increment in wireless communications. Based on the powerful analysis tool of the extrinsic information transfer chart, we are able to design optimal LDPC code via curve fitting. Degree profile of the code can be optimized using linear programming and mutual information transfer function. Via simulation, our profile provides a better curve match and performance in MIMO fading channels. This fact manifests the significance to design good LDPC codes to fit different channels.

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What this paper is about

LDPC-MIMO system provides great capacity increment in wireless communications. Based on the powerful analysis tool of the extrinsic information transfer chart, we are able to design optimal LDPC code via curve fitting. Degree profile of the code can be optimized using linear programming and mutual information transfer function. Via simulation, our profile provides a better curve match and performance in MIMO fading channels. This fact manifests the significance to design good LDPC codes to fit different channels.

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Available abstract

LDPC-MIMO system provides great capacity increment in wireless communications. Based on the powerful analysis tool of the extrinsic information transfer chart, we are able to design optimal LDPC code via curve fitting. Degree profile of the code can be optimized using linear programming and mutual information transfer function. Via simulation, our profile provides a better curve match and performance in MIMO fading channels. This fact manifests the significance to design good LDPC codes to fit different channels.

Key concepts: Low-density parity-check code, EXIT chart, Computer science, Fading, MIMO, Algorithm, Information transfer, Code (set theory)

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