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Influence of the radio signals frequency band on their spatial selection in communication channels

机译:无线电信号频带对通信信道中空间选择的影响

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This article deals with the dependence of the signal-to-noise ratio (S/N) on the frequency band of a radio channel when transmitting three different radio signals over it based on a mathematical model. Signals are transmitted on a single carrier frequency, in one direction and occupy the entire channel frequency band, which varied from 0 to 30 GHz. A threeelement sparse antenna array (SAA) is used for signal transmission. Each signal is emitted by all three SAA elements with certain phase shifts. In the reception area, such a structure of the total field is formed, at which the maxima of all transmitted signals are spatially spaced. This allows each signal to be received on a separate antenna. Studies have shown that the S/N ratio for different signals depends differently on the channel bandwidth. For a signal emitted by all SAA antennas in phase, the S/N ratio is practically independent of the bandwidth and is about 70 dB. For the two remaining phased signals the S/N ratio varies equally over the entire range of the channel frequency band values and is characterized by a sharp drop from 62 to 8 dB.
机译:当基于数学模型在其上发送三种不同的无线电信号时,本文涉及信噪比对无线电信道频带的依赖性。信号在单个载波频率上在一个方向上发送并占据整个信道频带,其变化为0到30 GHz。三个稀疏天线阵列(SAA)用于信号传输。每个信号由所有三个SAA元素发射,具有某些相移。在接收区域中,形成总场的这种结构,在该结构的所有透射信号的最大值是空间上间隔开的。这允许在单独的天线上接收每个信号。研究表明,不同信号的S / N比不同地取决于信道带宽。对于阶段的所有SAA天线发射的信号,S / N比实际上与带宽无关,并且是约70dB。对于两个剩余的相位信号,S / n比在信道频带值的整个范围内变化同样差异,其特征在于62至8dB的急剧下降。

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