2016Unpublished venueRequires access

The achievable sum rate of large-scale fading in multi-pair AF massive MIMO systems

Yang Liu, Jie Ding, Jing Yang, Qiqing Yang

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Abstract

A multi-pair amplify-and-forward (AF) MIMO system is considered in this paper, in which all source users transmit their information to destination users via a shared relay. With the large N regime, the effect of small-scale fading tends to diminish while the large-scale fading plays a main role in affecting the system performance. The large-scale fading is modeled as generalized-K fading. While the achievable sum rate is investigated for three power-scaling schemes where the Minimum Mean-Square Error (MMSE) algorithm is adopted at the relay with perfect channel state information (CSI). The large-scale fading parameter can influence the system performance to some degree according to our analysis. Simulation results help to assess the accuracy of our analytical expressions.

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What this paper is about

A multi-pair amplify-and-forward (AF) MIMO system is considered in this paper, in which all source users transmit their information to destination users via a shared relay. With the large N regime, the effect of small-scale fading tends to diminish while the large-scale fading plays a main role in affecting the system performance. The large-scale fading is modeled as generalized-K fading. While the achievable sum rate is investigated for three power-scaling schemes where the Minimum Mean-Square Error (MMSE) algorithm is adopted at the relay with perfect channel state information (CSI). The large-scale fading parameter can influence the system performance to some degree according to our analysis. Simulation results help to assess the accuracy of our analytical expressions.

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Available abstract

A multi-pair amplify-and-forward (AF) MIMO system is considered in this paper, in which all source users transmit their information to destination users via a shared relay. With the large N regime, the effect of small-scale fading tends to diminish while the large-scale fading plays a main role in affecting the system performance. The large-scale fading is modeled as generalized-K fading. While the achievable sum rate is investigated for three power-scaling schemes where the Minimum Mean-Square Error (MMSE) algorithm is adopted at the relay with perfect channel state information (CSI). The large-scale fading parameter can influence the system performance to some degree according to our analysis. Simulation results help to assess the accuracy of our analytical expressions.

Key concepts: Fading, Channel state information, MIMO, Relay, Fading distribution, Computer science, Scaling, Scale (ratio)

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