基于Buckingham相似原理的30+ GHz到THz频谱MIMO信道模型的推理原型

P. Neelakanta, D. D. Groff
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引用次数: 0

摘要

在多输入多输出(MIMO)通信中,可以考虑在毫米波范围(高于30+ GHz)的射频频谱中促进“未使用”段(窗口)的新频段,并在未分配的太赫兹频谱中寻求可用的延伸。这可以满足多千兆3G/4G应用在户外单蜂窝网络回程和室内特定多媒体网络中日益增长的需求。然而,与蜂窝和Wi-Fi相比,在室外电磁(EM)环境中支持亚毫米波长收发通信的无线系统可能面临“截然不同的传播几何形状”;此外,在室内环境中,设想具有定向的相关空间多路复用,MIMO链路可以在多个多路径上形成非常不同的传播几何形状;因此,基于毫米波/太赫兹波段所需测试频谱中各种mimo特定链路的随机特征的信道模型很少为人所知,几乎不存在。为了缓解这一问题,本文提出了一种方法,通过明智地分享与传统的低侧EM频谱“模型”(即从VLF到微/毫米波)相关的细节的“相似性”来推断亚毫米波段MIMO信道模型(称为“原型”)。本文提出的相关方法依赖于埃德加·白金汉的“相似原理”。“模型到(推理)原型”转换的范例集被导出并规定用于穷尽的衰落信道模型集,以及用于估计高端测试频谱中各种信道统计的路径损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conceiving Inferential Prototypes of MIMO Channel Models via Buckingham’s Similitude Principle for 30+ GHz through THz Spectrum
Facilitating newer bands of ‘unused’ segments (windows) of RF spectrum falling in the mm-wave range (above 30+ GHz) and seeking usable stretches across unallocated THz spectrum, could viably be considered for Multiple Input Multiple Output (MIMO) communications. This could accommodate the growing needs of multigigabit 3G/4G applications in outdoor-based backhauls in picocellular networks and in indoor-specific multimedia networking. However, in contrast with cellular and Wi-Fi, wireless systems supporting sub-mm wavelength transreceive communications in the outdoor electromagnetic (EM) ambient could face “drastically different propagation geometry”; also, in indoor contexts, envisaging pertinent spatial-multiplexing with directional, MIMO links could pose grossly diverse propagation geometry across a number of multipaths; as such, channel-models based on stochastic features of diverse MIMO-specific links in the desired test spectrum of mm-wave/THz band are sparsely known and almost non-existent. To alleviate this niche, a method is proposed here to infer sub-mm band MIMO channel-models (termed as “prototypes”) by judiciously sharing “similarity” of details available already pertinent to traditional “models” of lower-side EM spectrum, (namely, VLF through micro-/mm-wave). Relevant method proposed here relies on the “principle of similitude” due to Edgar Buckingham. Exemplar set of “model-to-(inferential)-prototype” transformations are derived and prescribed for an exhaustive set of fading channel models as well as, towards estimating path-loss of various channel statistics in the high-end test spectrum.
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