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The delay/Doppler radar altimeter

机译:延迟/多普勒雷达高度计

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The key innovation in the delay/Doppler radar altimeter is delay compensation, analogous to range curvature correction in a burst-mode synthetic aperture radar (SAR). Following delay compensation, height estimates are sorted by Doppler frequency, and integrated in parallel. More equivalent looks are accumulated than in a conventional altimeter. The relatively small along-track footprint size is a constant of the system, typically on the order of 250 m for a Ku-band altimeter. The flat-surface response is an impulse rather than the more familiar step function produced by conventional satellite radar altimeters. The radar equation for the delay/Doppler radar altimeter has an h/sup -5/2/(CT)/sup 1/2/ dependence on height h and compressed pulse length /spl tau/, which is more efficient than the corresponding h/sup 3/CT factor for a pulse-limited altimeter. The radiometric response obtained by the new approach would be 10 dB stronger than that of the TOPEX/Poseidon altimeter, for example, if the same hardware were used in the delay/Doppler altimeter mode. This new technique leads to a smaller instrument that requires less power, yet performs better than a conventional radar altimeter. The concept represents a new generation of altimeter for Earth observation, with particular suitability for coastal ocean regions and polar ice sheets as well as open oceans.
机译:延迟/多普勒雷达高度计的关键创新是延迟补偿,类似于突发模式合成孔径雷达(SAR)中的距离曲率校正。在延迟补偿之后,高度估算值将按多普勒频率排序,并进行并行积分。与传统的高度计相比,可以累积更多的等效外观。相对较小的沿线足迹尺寸是系统的常数,对于Ku波段高度计而言,通常约为250 m。平面响应是一种脉冲,而不是常规卫星雷达高度计产生的更熟悉的阶跃函数。延迟/多普勒雷达高度计的雷达方程具有h / sup -5 / 2 /(CT)/ sup 1/2 /依赖于高度h和压缩脉冲长度/ spl tau /,比相应的h更有效/ sup 3 / CT因数用于脉冲受限高度计。例如,如果在延迟/多普勒高度计模式中使用相同的硬件,则通过新方法获得的辐射度响应将比TOPEX / Poseidon高度计的辐射响应强10 dB。这项新技术使仪器体积更小,所需功率更少,但性能却优于常规雷达高度计。该概念代表了新一代的用于地球观测的高度计,特别适用于沿海海洋地区和极地冰盖以及公海。

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