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The design of an onboard digital Doppler processor for a spaceborne scatterometer

机译:星载散射仪的机载数字多普勒处理器的设计

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A digital Doppler processor, which will permit the Doppler center frequency of the measurement cell bandwidths to be adjusted to compensate for the effects of the Earth's rotation, will be used in the next NASA spaceborne scatterometer known as NSCAT. The authors describe the design and genesis of the NSCAT digital Doppler processor and discuss the performance tradeoff issues that were evaluated during the design phase. In this FFT (fast Fourier transform)-based technique, computation of the adjustment to the cell center frequencies will be done onboard using an approximate expression for the Doppler shift of the cell center versus orbit time. This technique also permits modification of the parameters used to locate the radar-backscatter-coefficient measurements cells by ground command in response to orbit changes.
机译:数字多普勒处理器将允许调整测量单元带宽的多普勒中心频率,以补偿地球自转的影响,并将在下一代NASA星载散射仪NSCAT中使用。作者描述了NSCAT数字多普勒处理器的设计和起源,并讨论了在设计阶段评估的性能折衷问题。在这种基于FFT(快速傅立叶变换)的技术中,对单元中心频率的调整的计算将在船上使用单元中心相对于轨道时间的多普勒频移的近似表达式完成。该技术还允许响应地面变化,通过地面命令修改用于定位雷达后向散射系数测量单元的参数。

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