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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Analysis of single-platform passive emitter location with terraindata
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Analysis of single-platform passive emitter location with terraindata

机译:利用terraindata分析单平台无源发射器的位置

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Frequency measurements made at a moving platform can be used to locate an emitter. An error ellipsoid analysis is used to compare the performance under three levels of a priori information on the emitter's altitude: (1) no knowledge, (2) terrain data, and (3) complete knowledge of the emitter's altitude. The analysis is performed for two simple platform paths that provide frequency measurements that are approximately time reversed versions of one another. When no a priori knowledge is available there is little difference between the performance when the platform maneuvers on a concave circular path or on a convex circular path and the performance depends very Little on the platform altitude. However, when some a priori altitude information is available the performance is markedly different on the two paths and is highly dependent on the platform altitude. Thus, this analysis provides the unexpected result that for seemingly similar platform paths, the performance can vary markedly when the emitter altitude is assumed known. Also, an interesting result is that for some cases it is possible to achieve better x-y accuracy when using terrain data than when the emitter's z location is known, because the terrain data provides terrain slope information. These cases are characterized in terms of the terrain slope at the emitter
机译:在移动平台上进行的频率测量可用于定位发射器。误差椭球分析用于比较发射器高度的三个先验信息水平下的性能:(1)不知道,(2)地形数据,以及(3)完全了解发射器高度。对两个简单的平台路径执行分析,这些路径提供的频率测量值彼此近似为时间倒转。在没有先验知识的情况下,当平台在凹形圆形路径或凸形圆形路径上操纵时,性能几乎没有差别,而性能几乎不依赖于平台高度。但是,当某些先验高度信息可用时,两条路径上的性能明显不同,并且高度依赖于平台高度。因此,该分析提供了出乎意料的结果,即对于看似相似的平台路径,当假定发射器高度已知时,性能可能会显着变化。同样,一个有趣的结果是,在某些情况下,使用地形数据时可以获得比已知发射器z位置时更好的x-y精度,因为地形数据可提供地形坡度信息。这些情况的特征在于发射器的地形坡度

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