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Proficiency of Leaky Coaxial Cable-Based MIMO System Using Radiated Field Distribution

机译:基于泄漏场分布的基于泄漏同轴电缆的MIMO系统的熟练程度

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This paper presents channel propagation characteristics of different multiple-input multiple-output (MIMO) systems using ray tracing approach in a confined area at 1.8 GHz according to the LTE-M standards. Leaky coaxial cables were exploited at different transmitted locations to visualize the fluctuated radiated field under different polarization combinations. In order to encounter this vision, the reflected and line-of-sight paths are under consideration for both vertically and horizontally polarized waves emitting from the leaky coaxial cables (LCXs). Emphasis is given to understand the effect of LCX configuration on the channel correlation coefficient and capacity (C) in the confined area. The exploration of experimental results reveals that the MIMO channel using LCXs has significant performance, specifically in the case of horizontal polarization. Furthermore, it is inferred that for the longer distance between transmitter and receiver, the correlation coefficients have higher magnitude.
机译:本文介绍了根据LTE-M标准,在1.8 GHz的受限区域中使用光线跟踪方法,不同的多输入多输出(MIMO)系统的信道传播特性。在不同的传输位置利用泄漏的同轴电缆来可视化不同极化组合下的波动辐射场。为了获得这种视觉效果,正在考虑从泄漏同轴电缆(LCX)发出的垂直和水平极化波的反射路径和视线路径。重点是要了解LCX配置对受限区域中通道相关系数和容量(C)的影响。对实验结果的探索表明,使用LCX的MIMO信道具有显着的性能,特别是在水平极化的情况下。此外,可以推断出,对于发射机与接收机之间的距离较长,相关系数具有较高的幅度。

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