尼日利亚地球空间路径上毫米波长交叉偏振模式的性能评估

H. David, M. Ajewole, John Sunday Ojo, A. Adediji
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引用次数: 0

摘要

雨水引起的去极化障碍是有效利用毫米波波段卫星通信系统的一个制约因素,特别是在象尼日利亚这样的热带地区。当采用双正交偏振在不增加带宽的情况下使信道容量翻倍时,由于雨滴的畸变,该区域经常经历高且不同程度的降雨强度并伴有大雨滴。本文利用大气研究中心(CAR)对流层观测站数据采集网络(TRODAN)获得的5年气候数据,研究了尼日利亚10个不同地点的5种毫米波长交叉极化判别(XPD)模式的性能。基于对流层影响的估计干扰水平,测试了五种不同的XPD模型(即最新的ITU-R 618-15、旧的ITU-R 722、SIM、CHU和DHW)的性能。结果表明,在ku波段上行/下行频率(10/14 GHz),新ITU-R模型在Jos, Yola, Sokoto和Nsukka的0.001至0.018%的时间内,不需要的信号将完全掩盖共极化信号。然而,在8.93和11.08 dB之间的衰落电平,串扰在接收站是普遍存在的。虽然最近的ITU-R模型得到了更广泛的接受,但在本研究中,性能排名最低,而SIM模型表现出最佳性能。因此,研究建议,SIM模型作为估计该地区去极化的首选模型。然而,进一步的实验数据验证建议,以证实这一主张。关键词:毫米波,交叉极化鉴别(XPD)模型,共极衰减,地空路径,热带地区
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance assessment of cross polarization models at millimetre wavelengths along EarthSpace path in Nigeria
Rain-induced depolarization impairments have been a constraint on the effective use of satellite communication systems at millimetre wave band especially in the tropical regions like Nigeria. This region often experiences high and varying degree of rainfall intensity accompanied with large raindrops due to distortion of raindrops when dual orthogonal polarization is employed to double the channel capacity without increasing the bandwidth. This paper examines the performance of five cross polarization discrimination (XPD) models at millimetre wavelengths over ten (10) different locations in Nigeria using five years climatological data acquired from Tropospheric Observatory Data Acquisition Network (TRODAN) of the Centre for Atmospheric Research (CAR). The performance of five different XPD models namely: recent ITU-R 618-15, old ITU-R-722, SIM, CHU and DHW were tested based on the level of estimated interference due to tropospheric effects. The results revealed that at Ku-band uplink/downlink frequencies (10/14 GHz), the unwanted signals will completely overshadow the co-polarized signal between 0.001 and 0.018% of time for the new ITU-R model at Jos, Yola, Sokoto and Nsukka. However, at fade level between 8.93 and 11.08 dB, the crosstalk is prevalent at the receiving station. Though, the recent ITU-R model received wider acceptance, the performance in this study is ranked the lowest while SIM model displayed the best performance. The study therefore recommends, SIM model as the most preferred model to be adopted in estimating depolarization in this region. However, further experimental data for validation is suggested to substantiate this assertion. Key words: Millimeter waves, cross polarization discrimination (XPD) models, co-polar attenuation, earth-space paths, tropical region.
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来源期刊
International Journal of Physical Sciences
International Journal of Physical Sciences 综合性期刊-综合性期刊
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审稿时长
24 months
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