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Comparative study on Radio Refractivity Gradient in the troposphere using Chaotic Quantifiers

机译:利用混沌量词的对流层射电折射率梯度比较研究。

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摘要

Complexity and nonlinear trend in the internal activities of the troposphere has been a great factor affecting the transmission and receiving of good quality of signals globally. In lieu of this, prediction of chaos and positive refractivity gradients for line-of-sight microwave radio paths is necessary for designing radio systems. Complexity in the troposphere due to changes in meteorological parameters can lead to the strong negative gradient (or super-refraction) which afterward lead to interference between terrestrial links and satellite earth stations. In this paper, a comparative study on the degree of complexity of Radio Refractivity Gradient (RRG) using Chaotic Quantifiers (CQ) such as Phase Plot Reconstruction (PPR), Average Mutual Information (AMI), False Nearest Neighbor (FNN), Lyapunov Exponent (LE), Tsallis Entropy (TS) and Recurrence Plot (RP) are discussed extensively. The RRG data (2011-2012) used in this work were obtained for 0 m to 100 m, from the archives of Tropospheric Data Acquisition Network (TRODAN) from five different stations namely; Akure (Geo. 7.299N,5.147E), Enugu (Geo. 6.46N,7.55E), Jos (Geo. 9.90N,8.86E), Minna (Geo. 9.58N,6.55E) and Sokoto (Geo. 13.01N,5.25E). The chaotic quantifiers are used to investigate the degree of complexity in the 30 minutes interval atmospheric data from the selected locations which is specified into rainy, dry and transition season months. The parallel and short diagonal lines observed depicts the evidence of chaos. However, the observed result shows that the RRG is higher during the rainy season than the dry season. In other words, the information is valid for the proposed data analysis, since the LE is actually directly proportional to the TE. Also, the results further show that the rainy season months exhibit higher chaoticity than the dry season months, which is equivalent to high radio refractivity gradient observed across the selected stations.
机译:对流层内部活动的复杂性和非线性趋势一直是影响全球高质量信号传输和接收的重要因素。取而代之的是,对于设计无线电系统,需要对视线微波无线电路径的混沌和正折射率梯度进行预测。由于气象参数的变化,对流层的复杂性会导致强烈的负梯度(或超折射),这随后会导致地面链路与卫星地球站之间的干扰。在本文中,使用相量图重构(PPR),平均互信息(AMI),最近邻(FNN),李雅普诺夫指数等混沌量词(CQ)对无线电折射率梯度(RRG)的复杂程度进行了比较研究。 (LE),Tsallis熵(TS)和递归图(RP)被广泛讨论。这项工作中使用的RRG数据(2011-2012年)是从5个不同站点的对流层数据采集网络(TRODAN)的档案中获得的,范围为0 m至100 m。 Akure(地理位置。 7.299 N < mn> 5.147 E ),恩努古(Geo。 6.46 N 7.55 E ),乔斯(地理位置。 9.90 < mo>∘ N 8.86 < mrow> E ),明纳(地理位置。 9.58 N 6.55 E )和Sokoto(Geo。 13.01 N 5.25 < / mn> E )。混沌量词用于调查从选定位置开始的每隔30分钟的大气数据的复杂程度,这些数据被指定为雨季,干旱和过渡季节月份。观察到的平行和短对角线描绘了混乱的迹象。但是,观察结果表明,雨季的RRG高于旱季的RRG。换句话说,该信息对于建议的数据分析是有效的,因为LE实际上与TE直接成比例。而且,结果还表明,雨季月份比旱季月份表现出更高的混乱度,这相当于在所选站点上观察到的高无线电折射率梯度。

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