2006Unpublished venueRequires access

The Pairwise Error Probability and Precoder Design for Amplify-And-Forward Half-Duplex Cooperative System

Yanwu Ding, Jian‐Kang Zhang, Kon Max Wong

Open publisher page 2 citations

Abstract

In this paper, we derive the exact asymptotic pairwise error probability (PEP) of an AF half-duplex cooperative system in which the maximum likelihood detector is used. Based on our analysis and observations, we propose a unitary precoder design to improve the system performance. We first design a precoder to achieve the full diversity gain function. Then for the case of a 4-QAM signal being transmitted, we further optimize the coding gain, and arrived at a closed-form optimum precoder. Simulations indicate that our proposed precoder design greatly improves the performance of the system

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What this paper is about

In this paper, we derive the exact asymptotic pairwise error probability (PEP) of an AF half-duplex cooperative system in which the maximum likelihood detector is used. Based on our analysis and observations, we propose a unitary precoder design to improve the system performance. We first design a precoder to achieve the full diversity gain function. Then for the case of a 4-QAM signal being transmitted, we further optimize the coding gain, and arrived at a closed-form optimum precoder. Simulations indicate that our proposed precoder design greatly improves the performance of the system

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Available abstract

In this paper, we derive the exact asymptotic pairwise error probability (PEP) of an AF half-duplex cooperative system in which the maximum likelihood detector is used. Based on our analysis and observations, we propose a unitary precoder design to improve the system performance. We first design a precoder to achieve the full diversity gain function. Then for the case of a 4-QAM signal being transmitted, we further optimize the coding gain, and arrived at a closed-form optimum precoder. Simulations indicate that our proposed precoder design greatly improves the performance of the system

Key concepts: Pairwise error probability, Coding gain, Pairwise comparison, Unitary state, Computer science, Diversity gain, Quadrature amplitude modulation, Control theory (sociology)

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