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首页> 外文期刊>EURASIP journal on advances in signal processing >A Geometrical Three-Ring-Based Model for MIMO Mobile-to-Mobile Fading Channels in Cooperative Networks
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A Geometrical Three-Ring-Based Model for MIMO Mobile-to-Mobile Fading Channels in Cooperative Networks

机译:协作网络中MIMO移动到移动衰落信道的基于几何三环的模型

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摘要

This paper deals with the modeling and analysis of narrowband multiple-input multiple-output (MIMO) mobile-to-mobile (M2M) fading channels in relay-based cooperative networks. In the transmission links from the source mobile station to the destination mobile station via the mobile relay, non-line-of-sight (NLOS) propagation conditions are taken into account. A stochastic narrowband MIMO M2M reference channel model is derived from the geometrical three-ring scattering model, where it is assumed that an infinite number of local scatterers surround the source mobile station, the mobile relay, and the destination mobile station. The complex channel gains associated with the new reference channel model are derived, and their temporal as well as spatial correlation properties are explored. General analytical solutions are obtained for the four-dimensional (4D) space-time cross-correlation function (CCF), the three-dimensional (3D) spatial CCF, the two-dimensional (2D) source (relay, destination) correlation function (CF), and the temporal autocorrelation function (ACF). Exact closed-form expressions for different CFs under isotropic as well as nonisotropic scattering conditions are provided in this article. A stochastic simulation model is then drawn from the reference model. It is shown that the CCFs of the simulation model closely approximate the corresponding CCFs of the reference model. The developed channel simulator is not only important for the development of future MIMO M2M cooperative communication systems, but also for analyzing the dynamic behavior of the MIMO M2M channel capacity.
机译:本文研究了基于中继的协作网络中的窄带多输入多输出(MIMO)移动到移动(M2M)衰落信道的建模和分析。在经由移动中继站从源移动站到目标移动站的传输链路中,考虑了非视距(NLOS)传播条件。随机窄带MIMO M2M参考信道模型是从几何三环散射模型得出的,其中假定无限数量的本地散射体围绕源移动台,移动中继和目标移动台。推导了与新参考信道模型关联的复杂信道增益,并探讨了它们的时间和空间相关特性。对于四维(4D)时空互相关函数(CCF),三维(3D)空间CCF,二维(2D)源(继电器,目标)相关函数( CF)和时间自相关函数(ACF)。本文提供了在各向同性以及非各向同性散射条件下不同CF的精确闭式表达式。然后从参考模型中得出随机仿真模型。结果表明,仿真模型的CCF非常接近参考模型的相应CCF。所开发的信道模拟器不仅对于未来MIMO M2M协作通信系统的开发很重要,而且对于分析MIMO M2M信道容量的动态行为也很重要。

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