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Compromise and Trade-Off between Signal-to-Noise Ratio and Number of Independent Samples for Radar Scatterometers with Pulse Compression

机译:用脉冲压缩的雷达散射仪的信噪比和独立样本之间的折衷和权衡之间的折衷和折衷

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It is well known, that the backscattering radiometric accuracy of radar scatterometers for ocean surface wind and precipitation measurements is decided by the signal-to-noise ratio and number of independent samples for non-coherent average. For sea wind scatterometers and meteorological radars, pulse compression can be employed to improve the range resolution and increase the number of independent numbers. But for airborne and spaceborne scatterometers, the peak power of the transmitter and the pulse length are usually decided by the platform capability, orbit parameter and observation geometry. As a result, compromise and trade-off between the signal-to-noise ratio (SNR) for measurement of each resolution cell and the total number of independent samples of each pulse are usually required. In this paper, based on the radiometric accuracy model, an optimization scheme for design of the independent samples numbers and the corresponding system bandwidth are presented. Based on the presented optimization scheme, the bandwidth of a Ku-band rotating fan-beam radar scatterometer for sea surface wind measurement is design. Simulation validates the optimization and design results.
机译:众所周知,雷达散射仪用于海洋表面风和降水测量的反向散射辐射精度由用于非相干平均值的信噪比和独立样本的数量决定。对于海风散射计和气象雷达,可以采用脉冲压缩来改善范围分辨率并增加独立数量的数量。但对于空气传播和星载散射仪,发射器的峰值功率和脉冲长度通常由平台能力,轨道参数和观察几何决定。因此,通常需要,用于测量每个分辨率小区的信噪比(SNR)和每个脉冲的独立样本的总数之间的折衷和折衷。本文基于辐射精度模型,介绍了独立样本数字和相应系统带宽的设计优化方案。基于所提出的优化方案,用于海面风测量的KU频带旋转风扇束雷达散射仪的带宽是设计。仿真验证优化和设计结果。

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