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首页> 外文期刊>IEEE Transactions on Signal Processing >Optimal Sensor Velocity Configuration for TDOA-FDOA Geolocation
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Optimal Sensor Velocity Configuration for TDOA-FDOA Geolocation

机译:TDOA-FDOA地理位置的最佳传感器速度配置

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This paper establishes the velocity orientation requirements for dual or multiple mobile sensors to achieve optimal localization of a stationary emitter, based on TDOA and FDOA measurements. In one approach, optimal velocities are obtained by maximizing the determinant of the Fisher Information Matrix (FIM). The other approach calls for minimizing the trace of the FIM inverse. The paper shows that for a given source-sensor position geometry, two opposite optimal sensor velocity configurations are possible. One way to apply the results of this paper is to deploy sensors onboard highly maneuvering platforms, which are able to rapidly align the platform velocities with those computed by one of the optimization approaches. This usually brings a significant increase in emitter localization accuracy even if the initial sensor-source position geometry is poor. A number of computer simulations are given in the paper, which confirms the paper's theoretical findings.
机译:本文基于TDOA和FDOA测量,确定了双或多个移动传感器的速度方向要求,以实现固定发射器的最佳定位。在一种方法中,通过最大化Fisher信息矩阵(FIM)的行列式来获得最佳速度。另一种方法要求最小化FIM逆的轨迹。论文表明,对于给定的源传感器位置几何形状,两个相反的最佳传感器速度配置是可能的。应用本文结果的一种方法是在高度机动的平台上部署传感器,该传感器能够将平台速度与通过一种优化方法计算出的速度快速对齐。即使初始传感器-源位置的几何形状较差,通常也会大大提高发射器的定位精度。本文提供了许多计算机模拟,证实了论文的理论发现。

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