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Wideband Unshielded-Twisted-Pair (UTP) Cable Measurements and Modeling for Multiple-Input–Multiple-Output (MIMO) Systems

机译:多输入多输出(MIMO)系统的宽带非屏蔽双绞线(UTP)电缆测量和建模

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摘要

The study of multiple-input–multiple-output (MIMO) systems over unshielded-twisted-pair (UTP) cables relies on or assumes models of the cable''''s transmission and crosstalk parameters. Several cable models have been proposed; however, there has been a lack of wide-scale line surveys to verify the applicability of these models. This paper presents the results of wideband-crosstalk and transmission-parameter measurements on UTP cables conducted at the laboratories of BTExact. The measurement results are then used to verify Joffe''''s MIMO channel model, which is one of the two available but mathematically equivalent models. It is shown that crosstalk estimates from measurements taken on very short cable lengths fail to account for the effects from the pair and bundle twisting. Model parameters measured on longer cable pieces yield more realistic frequency-dependent model predictions; these are, however, distorted at high frequencies due to resonance effects. In general, the model tends to overestimate far-end crosstalk and underestimate near-end crosstalk.
机译:对非屏蔽双绞线(UTP)电缆上的多输入多输出(MIMO)系统的研究依赖于或假设了电缆的传输和串扰参数模型。已经提出了几种电缆模型。但是,缺乏大规模的线路调查来验证这些模型的适用性。本文介绍了在BTExact实验室对UTP电缆进行宽带串扰和传输参数测量的结果。然后,将测量结果用于验证Joffe的MIMO信道模型,该模型是两个可用的但数学上等效的模型之一。结果表明,在很短的电缆长度上进行的测量得出的串扰估计值无法考虑线对和线束扭曲的影响。在更长的电缆上测得的模型参数可得出更实际的频率相关模型预测;但是,由于共振效应,它们在高频下会失真。通常,该模型倾向于高估远端串扰,而低估近端串扰。

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