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On ASER Analysis of Energy Efficient Modulation Schemes for a Device-to-Device MIMO Relay Network

机译:关于设备到设备的算术调制方案的Aser分析 - 用于设备的MIMO中继网络

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In this paper, we investigate the performance of a device-to-device (D2D) multiple-input and multiple-output (MIMO) communications using an amplify-and-forward relaying for various energy-efficient modulation schemes. For analysis, transmit antenna selection strategy is employed at the transmitter to select the best transmit antenna which maximizes the received signal power. In the analysis, we optimized the relay location to obtain the lowest outage probability possible and derived the generalized upper-bound average symbol error rate expressions of energy-efficient futuristic modulation schemes such as square quadrature amplitude modulation (QAM), rectangular QAM, cross QAM, and hexagonal QAM for D2D network. Further, we have derived the ergodic capacity expression to calculate the achievable rates. Comparative analysis of different QAM schemes for various constellation orders is also presented. Furthermore, the impact of the relative position of relay, path loss, and the number of antennas are also highlighted. Finally, the derived analytical results are verified through Monte-Carlo simulations.
机译:在本文中,我们研究了设备到设备(D2D)多输入和多输出(MIMO)通信的性能,用于使用各种节能调制方案的放大和前进的中继。为了分析,在发射器上采用发射天线选择策略,以选择最大化接收信号功率的最佳发射天线。在分析中,我们优化了中继位置,以获得最低的中断概率和推导出节能的未来派调制方案的广义上限平均符号误差率表达式,如方形正交幅度调制(QAM),矩形QAM,十字QAM和D2D网络的六边形QAM。此外,我们衍生出遍历能力表达以计算可实现的速率。还提出了各种星座订单的不同QAM方案的比较分析。此外,还突出了继电器,路径损耗和天线数量的相对位置的影响。最后,通过Monte-Carlo仿真验证了衍生的分析结果。

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