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Doppler-only target motion analysis in a high duty cycle sonar system

机译:高占空比声纳系统的多普勒的目标运动分析

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This paper presents a new method, in an underwater context, of estimating the trajectory of a target assumed to be in constant velocity motion. The observer system is composed of a transmitter (emitting continuously, said also in high duty cycle mode) and a set of passive underwater acoustic sensors (e.g. receiving sonobuoys) not necessarily collocated with the transmitter. Each receiver detects the single-tone signal emitted by the transmitter after its reflection on the target. The two sets of doubly Doppler-shifted frequency measurements for each receiver make the target motion analysis (TMA) feasible, even when only one receiver is available. First, we develop the exact model of the bistatic received frequencies and then we compute the Crame?r-Rao lower bound (CRLB) when the number of receivers is 1, 2, or 3, the measurements being corrupted by an additive and time-independent Gaussian noise. Finally, using some realistic scenarios, we show that the maximum likelihood estimated is actually efficient.
机译:本文在水下背景下呈现了一种新方法,估计假设在恒定速度运动中的目标的轨迹。观察者系统由发送器和一组无源的水声传感器(例如接收声纳浮标)未必与发射器并置的(连续发光,在高负载循环模式也表示)。每个接收器在其对目标的反射之后检测到发射器发射的单音信号。每个接收器的两组双倍移位频率测量值使目标运动分析(TMA)可行,即使只有一个接收器可用。首先,我们开发了BISTOGED接收频率的确切模型,然后我们计算CARAME?R-RAO下限(CRLB)当接收器的数量为1,2或3时,测量被添加剂和时间损坏 - 独立高斯噪音。最后,使用一些现实的情景,我们表明估计的最大可能性实际上是有效的。

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