首页> 外文会议>Geoscience and Remote Sensing Symposium, 2003. IGARSS '03. Proceedings. 2003 IEEE International >The SAR train concept: required antenna area distributed over N smaller satellites, increase of performance by N
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The SAR train concept: required antenna area distributed over N smaller satellites, increase of performance by N

机译:SAR列车概念:所需的天线面积分布在N颗较小的卫星上,性能提高N倍

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The concept implements the coherent combination of the N SAR flying along a same arc as seen from the ground. A particular case is with N SAR in visibility and a single transmit. A "Signal Cleaning" SAR Train keeps unchanged the maximum antenna area of each individual SAR and brings a factor N advantage on both the SNR and the ambiguity protection. The main formation constraint is the width of the tube containing the satellite trajectories on an earth frame. An "Antenna distributing" SAR Train enables the distribution of an unchanged total minimum antenna area into N smaller elementary antennas, together with the multiplication by N of the merit factor (swath over azimuth resolution ratio). Application for N < 2 requires very tight along track SAR spacing accuracy. Use of appropriate spread spectrum waveforms instead of conventional pulse waveforms removes the major part of the extra orbit constraints induced by "Antenna distributing" and enables it for any value of N. A Train of N SAR in visibility eases the metrology of the formation (DGPS) and the global energy efficiency is increased by N since with only single transmit SAR the same performance is achieved. Moreover, the orbit constraints are relaxed by 2. As part of its application, the concept can circumvent the matter of huge antenna size for SAR mission in P band or at very high altitude, all the more as in these cases the tube width constraints are reduced (function of /spl lambda/ and altitude).
机译:该概念实现了N SAR沿着从地面看去的相同弧线的连贯组合。特殊情况是可见性为N SAR,且一次发送。 “信号清洁” SAR序列保持每个单独SAR的最大天线面积不变,并在SNR和歧义保护方面都带来了N倍的优势。主要的编队约束是在地架上包含卫星轨迹的管的宽度。 “天线分配” SAR序列可将未更改的总最小天线面积分配到N个较小的基本天线中,并且将品质因数(偏移量超过方位分辨率)乘以N。 N <2的应用要求沿轨道SAR的间隔精度非常严格。使用适当的扩频波形代替传统的脉冲波形,消除了“天线分布”引起的大部分额外轨道约束,并使它适用于任何N值。可见性中的N SAR列简化了地层的计量学(DGPS ),并且由于仅使用一个发射SAR就可以实现相同的性能,因此全球能源效率提高了N.此外,将轨道约束放宽2倍。作为其应用的一部分,该概念可以规避在P波段或非常高的高度进行SAR任务所需的巨大天线尺寸,因为在这些情况下,管宽约束是降低(/ spl lambda /和高度的功能)。

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