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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Analysis of Energy Efficiency and Area Throughput in Large Scale MIMO Systems with MRT and ZF Precoding
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Analysis of Energy Efficiency and Area Throughput in Large Scale MIMO Systems with MRT and ZF Precoding

机译:用MRT和ZF预编码的大规模MIMO系统能效和面积吞吐量分析

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The large-scale multiple input multiple output (LS-MIMO) systems are equipped with a large number of antennas at the base station. These systems are capable of serving a larger number of user terminals, with massive gains in the form of energy and bandwidth efficiency. The energy efficiency of LS-MIMO system depends on the overall power consumption and data rate. In this paper, we have improved the energy efficiency of the LS-MIMO system by using maximum ratio transmission/combining and zero forced linear pre-coding schemes in single and multi-cell scenarios. We have jointly considered the uplink and downlink communications to propose an improved, more practical and more realistic power consumption model. The proposed model deliberates the power required for the power amplifier, linear processing and the circuit components at the base stations and user terminals. The outcome of this work provides a significant improvement in terms of energy efficiency and area throughput. The analytical results illustrate that the LS-MIMO systems achieve the maximum energy efficiency and area throughput wherein larger number of transmit antennas are installed at the base station to serve comparatively greater number of users terminals. The mathematical results depict the similar performance for imperfect channel state information in multi-cell setups. All aspects of power consumption during bidirectional communication are considered to provide precise results. Hence, the improvements in simulations results support the accuracy of the proposed model.
机译:大型多输入多输出(LS-MIMO)系统配备了基站的大量天线。这些系统能够提供更多数量的用户终端,以能量和带宽效率的形式具有大量的增益。 LS-MIMO系统的能效取决于整体功耗和数据速率。在本文中,我们通过使用单个和多单元场景中的最大比率传输/组合和零强制线性预编码方案来提高LS-MIMO系统的能效。我们共同考虑了上行链路和下行链路通信,提出了一种改进,更实用和更现实的功耗模型。所提出的模型刻意功率放大器,线性处理和基站和用户终端的电路元件所需的功率。这项工作的结果提供了能源效率和面积吞吐量的显着改善。分析结果说明了LS-MIMO系统实现了最大能效和区域吞吐量,其中较大数量的发射天线安装在基站上以用于相对数量的用户终端。数学结果描述了多单元设置中的不完美信道状态信息的类似性能。双向通信期间功耗的所有方面被认为是提供精确的结果。因此,模拟结果的改进支持所提出的模型的准确性。

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