全息多输入多输出:高能效通信需要多少天线?

IF 10.7 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Wireless Communications Pub Date : 2024-11-06 DOI:10.1109/TWC.2024.3488566
Sarah Bahanshal;Qurrat-Ul-Ain Nadeem;Md. Jahangir Hossain
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引用次数: 0

摘要

全息多输入多输出(HMIMO)通信系统利用配备大量天线(NoA)的空间约束阵列,从增加的空间多路复用和空间分辨率增益中受益。研究了一种符合电磁波信道模型的多用户HMIMO系统,并对其能效进行了研究。我们首先推导了在最大比传输(MRT)和零强制(ZF)预编码下的遍历可实现速率的封闭表达式,以及在上行最大比组合(MRC)和ZF组合下的遍历可实现速率,这些速率在基站(BS)上实现,由信道提供的自由度(DoF)数量决定了复杂性。利用这些表达式,我们提出了一个关于功率分配(PA)和NoA在空间约束的HMIMO曲面上在BS和用户处布置的EE最大化问题,并使用交替优化算法求解。对于固定目标,我们用两个解析方程的解来推导最优目标最优化,而对于固定目标,我们用顺序分式规划来求最优目标最优化。数值结果对不同操作制度和HMIMO表面不同边长下的EE性能提供了有用的见解。研究结果表明,在下行和上行MRT和MRC条件下,在低功率预算(噪声限制)条件下,超过DoF数部署更多的天线可以提高EE,而在高功率预算(干扰限制)条件下,将NoA固定在DoF数上可以使EE最大化。另一方面,在ZF预编码器和组合器下,在所有功率预算下,获得最佳EE的NoA都大于DoF,并且随着功率预算的增加,附加天线的数量减少。
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Holographic MIMO: How Many Antennas Do We Need for Energy Efficient Communication?
Holographic multiple-input multiple-output (HMIMO) communication systems utilize spatially-constrained arrays equipped with large number of antennas (NoA) to benefit from increased spatial multiplexing and spatial resolution gains. We consider a multi-user HMIMO system under an electromagnetic wave compliant channel model, and study its energy-efficiency (EE). We first derive closed-form expressions of the ergodic achievable rates under maximum ratio transmission (MRT) and zero-forcing (ZF) precoding in the downlink, and maximum ratio combining (MRC) and ZF combining in the uplink, implemented at the base station (BS) with reduced complexity dictated by the number of degrees-of-freedom (DoF) offered by the channel. Using these expressions, we formulate an EE maximization problem with respect to the power allocation (PA) and the NoA arranged within spatially-constrained HMIMO surfaces at the BS and users, and solve it using an alternating optimization algorithm. For fixed PA, the optimal NoA is derived as the solution of two analytical equations, while for fixed NoA we use sequential fractional programming to obtain the optimal PA. Numerical results yield useful insights into the EE performance in different operating regimes and under different side-lengths of HMIMO surfaces. The presented results show that under MRT and MRC in the downlink and uplink respectively, deploying more antennas in excess of the number of DoF increases the EE in low power budget (noise-limited) regime, whereas fixing the NoA to the number of DoF maximizes the EE in higher power budget (interference-limited) regime. On the other hand, under ZF precoders and combiners, the NoA that achieve the optimal EE is larger than the DoF under all power budgets, with the number of additional antennas decreasing with increasing power budget.
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来源期刊
CiteScore
18.60
自引率
10.60%
发文量
708
审稿时长
5.6 months
期刊介绍: The IEEE Transactions on Wireless Communications is a prestigious publication that showcases cutting-edge advancements in wireless communications. It welcomes both theoretical and practical contributions in various areas. The scope of the Transactions encompasses a wide range of topics, including modulation and coding, detection and estimation, propagation and channel characterization, and diversity techniques. The journal also emphasizes the physical and link layer communication aspects of network architectures and protocols. The journal is open to papers on specific topics or non-traditional topics related to specific application areas. This includes simulation tools and methodologies, orthogonal frequency division multiplexing, MIMO systems, and wireless over optical technologies. Overall, the IEEE Transactions on Wireless Communications serves as a platform for high-quality manuscripts that push the boundaries of wireless communications and contribute to advancements in the field.
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