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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Nested Hybrid Cylindrical Array Design and DoA Estimation for Massive IoT Networks
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Nested Hybrid Cylindrical Array Design and DoA Estimation for Massive IoT Networks

机译:嵌套混合圆柱阵列设计和大规模物联网网络的DOA估计

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Reducing cost and power consumption while maintaining high network access capability is a key physical-layer requirement of massive Internet of Things (mIoT) networks. Deploying a hybrid array is a cost- and energy-efficient way to meet the requirement, but would penalize system degree of freedom (DoF) and channel estimation accuracy. This is because signals from multiple antennas are combined by a radio frequency (RF) network of the hybrid array. This article presents a novel hybrid uniform circular cylindrical array (UCyA) for mIoT networks. We design a nested hybrid beamforming structure based on sparse array techniques and propose the corresponding channel estimation method based on the second-order channel statistics. As a result, only a small number of RF chains are required to preserve the DoF of the UCyA. We also propose a new tensor-based two-dimensional (2-D) direction-of-arrival (DoA) estimation algorithm tailored for the proposed hybrid array. The algorithm suppresses the noise components in all tensor modes and operates on the signal data model directly, hence improving estimation accuracy with an affordable computational complexity. Corroborated by a Cramer-Rao lower bound (CRLB) analysis, simulation results show that the proposed hybrid UCyA array and the DoA estimation algorithm can accurately estimate the 2-D DoAs of a large number of IoT devices.
机译:降低成本和功耗,同时保持高网络访问能力,是大规模物联网(MIOT)网络的关键物理层要求。部署混合动力阵列是满足需求的成本和节能的方式,但会惩罚自由度(DOF)和信道估计准确度的系统程度。这是因为来自多个天线的信号由混合阵列的射频(RF)网络组合。本文提出了一种用于MIER网络的新型混合均匀圆柱形阵列(UCYA)。我们根据稀疏阵列技术设计嵌套的混合波束形成结构,并提出了基于二阶信道统计的相应信道估计方法。结果,只需要少量的RF链来保留UCYA的DOF。我们还提出了一种新的张量的二维(2-D)到达方向(DOA)估计算法,适用于所提出的混合阵列。该算法抑制了所有张量模式中的噪声分量,并直接在信号数据模型上操作,从而提高了具有实惠的计算复杂性的估计精度。通过Cramer-Rao下限(CRLB)分析,仿真结果表明,所提出的混合UCYA阵列和DOA估计算法可以准确地估计大量IOT设备的2-D DOA。

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