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三维MIMO阵列空间相关性分析 被引量:2
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作者 穆昌 姚俊良 蔡振合 《电信科学》 北大核心 2015年第1期100-105,共6页
主要研究了3D-MIMO阵列的空间相关性。首先给出全局坐标系下精确的3D-MIMO信道模型,为真实准确的信道相关性分析提供基础。接着推导了天线阵列沿不同方向摆放、电磁波水平和俯仰功率角度谱分布服从拉普拉斯分布情况下空间相关性的数学... 主要研究了3D-MIMO阵列的空间相关性。首先给出全局坐标系下精确的3D-MIMO信道模型,为真实准确的信道相关性分析提供基础。接着推导了天线阵列沿不同方向摆放、电磁波水平和俯仰功率角度谱分布服从拉普拉斯分布情况下空间相关性的数学表达式,建立起空间相关性与信道参数的数学关系。最后通过3个仿真实验从不同角度验证了理论分析的准确性,对多个实验结果进行联合分析,得到空间相关性产生的根本原因及影响因素。 展开更多
关键词 三维mimo 空间相关性 无线信道模型
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3D MIMO系统下水平和垂直维联合预编码的研究 被引量:8
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作者 白帆 李汀 +1 位作者 李飞 郑宝玉 《信号处理》 CSCD 北大核心 2016年第9期1093-1100,共8页
第五代(5G)移动通信网络将会在很大程度上提高无线通信的速率。由于多入多出系统(MIMO)能够满足5G网络中对信息速率越来越高的要求,现在正受到广泛的关注。然而,传统意义的二维(2D)MIMO技术仅仅能控制水平维的波束。为了满足5G的需求,... 第五代(5G)移动通信网络将会在很大程度上提高无线通信的速率。由于多入多出系统(MIMO)能够满足5G网络中对信息速率越来越高的要求,现在正受到广泛的关注。然而,传统意义的二维(2D)MIMO技术仅仅能控制水平维的波束。为了满足5G的需求,需要引入能同时考虑水平维和垂直维波束的三维(3D)MIMO技术。本文基于3D MIMO信道模型,在分析3D MIMO信道相关性的基础上,针对发射相关和接收相关矩阵在水平维和垂直维的分解,提出了一种利用3D MIMO信道相关性的有限反馈预编码方案。并在此基础上,结合2D MIMO信道下的DFT码本和Grassmannian码本,提出了两种新的3D MIMO信道下的码本。实验结果表明,提出的3D MIMO预编码方案整体性能优于传统2D MIMO和现有的3D MIMO预编码方案。在3D MIMO系统中,由于可以动态调节天线的下倾角,故充分发掘了空间三维自由度。3D MIMO预编码技术减小小区间干扰,增加了系统容量,有效地提高了整个通信系统的性能。 展开更多
关键词 第五代移动通信 三维mimo 预编码 DFT码本 Grassmannian码本
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Generalized 3D Scattering Channel Model with MIMO Antenna Systems 被引量:5
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作者 Jie Zhou Hao Jiang Hisakazu Kikuchi 《China Communications》 SCIE CSCD 2016年第5期66-81,共16页
In this paper, a generalized three-dimensional(3D) scattering channel model for macrocellular land mobile environments is considered. This model simultaneously describes angular arrival of multi-path signals in the az... In this paper, a generalized three-dimensional(3D) scattering channel model for macrocellular land mobile environments is considered. This model simultaneously describes angular arrival of multi-path signals in the azimuth and elevation planes in an environment where uniformly distributed scatterers are assumed to be present in hemispheroids around the base station(BS) and mobile station(MS). Using this channel model, we first derive the closed-form expression for the joint and marginal probability density functions of the angle-of-arrival and time-of-arrival measured at the BS and the MS corresponding to the azimuth and elevation angles. Next, we derive an expression for the Doppler spectral distribution caused by motion of the MSs. Furthermore, we analyze the performance of multiple-input multiple-output antenna systems numerically. The results show that the proposed 3D scattering channel model performs better than previously proposed two-dimensional(2D) models for indoor and outdoor environments. We compare the results with previous scattering channel models and measurement results to validate the generalizability of our model. 展开更多
关键词 3D scattering channel model angle of arrival Doppler spectra multiple-input multiple-output
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Underwater three-dimensional imaging using narrowband MIMO array 被引量:4
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作者 LIU XiongHou SUN Chao +2 位作者 YI Feng LIU ZongWei LI MingYang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第7期1346-1354,共9页
To obtain high cross-range resolution, the underwater 3-D acoustic imaging system usually requires a rectangular array with a great number of sensors and a large physical size. To reduce the sensor number and the arra... To obtain high cross-range resolution, the underwater 3-D acoustic imaging system usually requires a rectangular array with a great number of sensors and a large physical size. To reduce the sensor number and the array physical size simultaneously, this paper proposes a new underwater 3-D acoustic imaging approach based on a novel multiple-input multiple-output (MIMO) array. Specifically, the MIMO array is composed of four uniform linear arrays (ULAs) located on four sides of a rectangle. The transmitting array composed of two ULAs is located on a pair of opposite sides, and the receiving array composed of another two ULAs is located on the other two sides. Furthermore, narrowband waveforms coded with orthogonal polyphase sequences are employed as transmitting waveforms. When the subcode numbers in the polyphase coded sequences are sufficient, the MIMO array has the same 3-D imaging ability as a rectangular array, which has a two-time bigger size than that of the former. Consequently, the MIMO array can not only save a great number of sensors, but halve the array size, when compared to a rectangular array with the same cross-range resolution. Computer simulations are provided to demonstrate the effectiveness of the proposed imaging approach. 展开更多
关键词 underwater acoustic imaging 3-D imaging multiple-input multiple-output mimo array sparse array
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