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Amplitude-goniometric passive location of an emitting target in the nonstationary radio channel

机译:非平稳无线电信道中发射目标的振幅角被动位置

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摘要

The further development of the concept related to passive direction finders (DFs) equipped with an energy-measurement channel is implemented. The goniometric-energy method of passive detection and ranging, according to which the slant distance to a target can be determined from its emission in the form of a constant-envelope signal, is generated as applied to the given stationary DFs. In the spatial case, the passive location problem is solved using the time-dependent behavior of the generalized radiolocation coefficient. A complex algorithm is constructed with the aim at jointly estimating the given coefficient and the detection range under the condition that rectilinear uniform motion of an emitting target is simulated on the estimation interval. The computational experiment results are presented to confirm the possibility of practical application of the proposed method.
机译:实现了与配备有能量测量通道的无源测向仪(DF)有关的概念的进一步发展。应用于给定的固定DF时,生成了一种被动检测和测距的测角能量方法,根据该方法,可以根据其以恒定包络信号形式发射的信号确定到目标​​的倾斜距离。在空间情况下,使用广义无线电定位系数随时间变化的行为来解决无源定位问题。构造了一种复杂算法,其目的在于在估计间隔上模拟发射目标的直线匀速运动的条件下,共同估计给定系数和检测范围。给出了计算实验结果,证实了该方法的实际应用可能性。

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