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Passive Source Localization Using an Airborne Sensor Array in the Presence of Manifold Perturbations

机译:在流形扰动下使用机载传感器阵列进行被动源定位

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This paper studies localizing sources of electromagnetic energy using a passive sensor array whose manifold is only nominally known. The problem of source localization is studied in the context of an airborne array that is able to observe a ground-based source from multiple angles. External and self-calibration algorithms are developed as a means to obtain accurate source localization estimates when the sensor manifold is perturbed. External calibration establishes the expected difference between the actual and modeled array manifold using signals at known locations. Self-calibration assumes that this expected difference is known only approximately and relies on signals of opportunity in the environment to provide updates. Several novel calibration algorithms are proposed, and their performance is tested on experimental data. The results indicate that significant performance gains are achieved with the use of the proposed calibration algorithms
机译:本文研究使用无源传感器阵列(仅在名义上是已知的)的电磁能量源。在机载阵列的背景下研究了源定位问题,该机载阵列能够从多个角度观察地面源。开发了外部和自校准算法,作为在干扰传感器歧管时获得准确源定位估计的一种方法。外部校准使用已知位置的信号确定实际阵列歧管与建模阵列歧管之间的预期差异。自校准假定此预期差异仅是大约已知的,并且依赖于环境中的机会信号来提供更新。提出了几种新颖的校准算法,并在实验数据上测试了它们的性能。结果表明,使用建议的校准算法可显着提高性能

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