Angle of Arrival distribution for Coherent Scattering from an Undulating Sea Surface

M. Rawat, Brejesh Lall, Seshan Srirangarajan
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Abstract

In this work, we aim to evaluate the statistical characterization of the angle of arrival (AoA) at the receiver due to coherent scattering from a random sea surface. We represent the sea surface as a Sum of Sinusoids (SoS) and model it using Pierson-Moscovitz (PM) sea wave spectrum. We evaluate the random behavior of potential scatterers along the sea surface, sea surface wave height, and their possible impact on the distribution of AoA at the receiver. Initially, analysis is carried out for a single realization of the sea surface, i.e., a sinusoidal surface. The results obtained for a sinusoidal surface are averaged to evaluate the characteristics of the ensemble-averaged SoS surface. The AoA model proposed in this work can be applied to diverse environmental conditions. The PDF so obtained can further be used to evaluate the Doppler spread and Autocorrelation function in an UW channel.
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波浪海面相干散射的到达角分布
在这项工作中,我们旨在评估随机海面相干散射对接收机到达角(AoA)的统计特性。我们将海面表示为正弦波(SoS)的和,并使用Pierson-Moscovitz (PM)海浪谱对其进行建模。我们评估了潜在散射体沿海面、海面波高的随机行为,以及它们对接收处AoA分布的可能影响。首先,对海面的单一实现进行分析,即正弦表面。对正弦表面得到的结果进行平均,以评价系综平均SoS表面的特性。本文提出的AoA模型可以适用于不同的环境条件。由此得到的PDF可以进一步用于评价UW信道中的多普勒扩频和自相关函数。
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