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The Influence of Boundary Layer Turbulence on the BER of 2.4 GHz Microwave Communication

机译:边界层湍流对2.4 GHz微波通信BER的影响

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摘要

The turbulence scintillation has significant effect on wireless communication. This paper studies the intensity of turbulence, scintillation index and scintillation BER of the 2.4 GHz band. We estimate the intensity of turbulence on microwave band by combining the coefficient A, B and measured data. We find that the parameter of temperature-humidity has great influence on the microwave band than that on the optical band. According to the classification method proposed by Davis, the turbulence on microwave band belongs to strong turbulence. Then we analyze the scintillation index on microwave band under zero inner scale condition and non-zero inner scale condition respectively and derived the microwave scintillation BER under different modulation modes through the microwave scintillation index. As the research results: the microwave scintillation index is inversely proportional to the frequency but it is proportional to the turbulence scale and propagation distance. The scintillation index of spherical wave is higher than that of plane wave. The scintillation BER of DPSK modulation method is the lowest among DPSK, OOK and QPSK, and a lower microwave frequency can also decrease the scintillation BER. The inner-scale of turbulence has significant effects on the effective propagation distance. The effective propagation distance may change a few hundred meters when the inner scale changes a few millimeters. In order to reduce the scintillation BER in the microwave communication, we should choose the appropriate frequency, modulation mode, propagation distance and turbulent environment.
机译:湍流闪烁对无线通信具有重大影响。本文研究了2.4 GHz频段的湍流强度,闪烁指数和闪烁BER。我们通过结合系数A,B和测量数据来估计微波带上的湍流强度。我们发现,温度-湿度参数对微波频带的影响比对光学频带的影响大。根据戴维斯提出的分类方法,微波带上的湍流属于强湍流。然后分别分析了零内标和非零内标条件下微波波段的闪烁指数,并通过微波闪烁指数得出了不同调制方式下的微波闪烁BER。研究结果表明:微波闪烁指数与频率成反比,但与湍流尺度和传播距离成正比。球面波的闪烁指数高于平面波的闪烁指数。 DPSK调制方法的闪烁BER在DPSK,OOK和QPSK中最低,而较低的微波频率也可以降低闪烁BER。内部湍流尺度对有效传播距离有重要影响。当内标尺变化几毫米时,有效传播距离可能会变化几百米。为了减少微波通信中的闪烁BER,我们应该选择合适的频率,调制方式,传播距离和湍流环境。

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