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Pilot Length Optimization for Spectral and Energy Efficient D2D Communications Underlay Massive MIMO Networks

机译:频谱和高能效D2D通信的导频长度优化,支持大规模MIMO网络

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This paper investigates the pilot length optimization to improve the system energy efficiency (EE) and spectral efficiency (SE) for the Device-to-device (D2D) communications underlay Massive multiple-input multiple-output (MIMO) cellular networks. In order to reduce the channel estimation error caused by the pilot reuse among cellular users (CUEs) and D2D users (DUEs), a heuristic pilot optimization and pilot allocation (PA) scheme is formulated through minimizing the channel-estimation-interference-strength (CEIS). By taking into account the interference among both CUEs and DUEs, the optimal pilot length is obtained with the purpose of maximizing the system EE and SE. Intensive simulations are done to investigate the relation between the pilot length and the number of D2D pairs in terms of EE and SE. The results shown that the optimal pilot length always exists with the variation of the number of D2D pairs and the PA with optimal pilot length can significantly improve the performance of both EE and SE compared with the completely reused or orthogonal pilot scheduling strategy.
机译:本文研究了导频长度优化,以提高大规模多输入多输出(MIMO)蜂窝网络为基础的设备到设备(D2D)通信的系统能效(EE)和频谱效率(SE)。为了减少由蜂窝用户(CUE)和D2D用户(DUE)之间的导频复用引起的信道估计误差,通过最小化信道估计干扰强度(A)来制定启发式导频优化和导频分配(PA)方案。 CEIS)。通过考虑CUE和DUE之间的干扰,可以获得最佳导频长度,目的是使系统EE和SE最大化。进行了密集的仿真,以根据EE和SE研究导频长度和D2D对的数量之间的关系。结果表明,最优导频长度始终随D2D对数量的变化而存在,并且与完全重用或正交导频调度策略相比,具有最佳导频长度的PA可以显着提高EE和SE的性能。

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