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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Energy Efficiency of mmWave MIMO Systems With Spatial Modulation and Hybrid Beamforming
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Energy Efficiency of mmWave MIMO Systems With Spatial Modulation and Hybrid Beamforming

机译:具有空间调制和混合波束形成的MMWAVE MIMO系统的能效

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摘要

This work addresses the problem of energy-efficient radio resource allocation in large-scale multiple-input multiple-output (MIMO) systems using hybrid beamforming and spatial modulation, communicating using mmWaves. The problem is formulated as the maximization of the bit-per-Joule energy efficiency with respect to the transmit power and number of active radio-frequency (RF) chains, enforcing constraints on maximum power, maximum and minimum number of active RF chains, and minimum achievable rate guarantee. The optimization is carried out considering both the standard linear power consumption model, as well as the case in which the transmit amplifier operates in the non-linear region. In both cases, the globally optimal solution is derived with affordable complexity. Numerical results confirm the optimality of the proposed optimization framework, showing that spatial modulation with hybrid beamforming is more energy-efficient than a hybrid beamforming system without spatial modulation for realistic hardware power dissipation values.
机译:这项工作解决了使用混合波束形成和空间调制的大型多输入多输出(MIMO)系统中的节能无线电资源分配问题,使用MMWaves进行通信。该问题的制定为相对于发射功率和有源射频(RF)链的数量的比特 - 每焦耳能量效率的最大化,强制执行最大功率,最大和最小有源RF链的限制,以及最低可实现的速率保证。考虑标准线性功耗模型以及发送放大器在非线性区域中操作的情况进行了优化。在这两种情况下,全球最佳解决方案都具有实惠的复杂性。数值结果证实了所提出的优化框架的最优性,示出了具有混合波束形成的空间调制比混合波束形成系统更节能而没有用于现实硬件功耗值的空间调制。

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