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ATMOSPHERIC EFFECTS IN ULTRA WIDEBAND WIRLESS COMUNICATIONS IN THE EXTREMELY HIGH FREQUENCY (EHF)

机译:超高频(EHF)中超宽带无线通信中的大气效应

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The growing demand for broadband wireless communication links and the lack of wide frequency bands within the conventional spectrum causes us to seek bandwidth in the higher microwave and millimeter-wave spectrum at Extremely High Frequencies (EHF) above 30GHz. One of the principal challenges in realizing modern wireless communication links in the EHF band is phenomenon occurring during electromagnetic wave propagation through the atmosphere. Space-frequency theory of the propagation of an ultra-wide band radiation in dielectric media is presented. Characterization of the atmospheric medium is via its refractivity leading to a transfer function, which describes the response of the medium in the frequency domain. This description enables the consideration of broadband signals taking into account inhomogeneous absorptive and dispersive effects of the medium. Analytical expressions are derived when a pulse-modulated signal is propagating in a general dielectric material. We demonstrate the approach by studying propagation of ultra-wide band signals, while transmitted in the vicinity of the 60GHz absorption peak of the atmospheric medium at millimeter wavelengths.
机译:对宽带无线通信链路的需求不断增长,以及常规频谱内缺乏宽带,这使我们在30 GHz以上的极高频率(EHF)的较高微波和毫米波频谱中寻求带宽。在EHF频段上实现现代无线通信链路的主要挑战之一是在电磁波传播通过大气层时发生的现象。提出了超频辐射在电介质中传播的时空理论。大气介质的表征是通过其折射率导致传递函数进行的,该函数描述了频域中介质的响应。该描述能够考虑到介质的非均匀吸收和色散效应来考虑宽带信号。当脉冲调制信号在普通介电材料中传播时,可以得出解析表达式。我们通过研究超宽带信号的传播来演示该方法,而该信号是在大气介质的毫米波波长的60GHz吸收峰附近传输的。

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