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Navigation by inertial device and signals of opportunity

机译:通过惯性装置导航和机会信号

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Inertial navigation systems are known to yield rather accurate measurements over short time intervals, while their error variance tends to increase with time. In order to keep the error within specification most systems use GPS signals. In the absence of GPS data, due to jamming or spoofing, it is desirable to use signals of opportunity instead. We examine the use of time of arrival measurements of signals of opportunity that have known structure. We propose a low complexity semi-definite relaxation algorithm by converting the maximum likelihood location estimator to a convex optimization problem. Simulation results demonstrate that the proposed algorithms converge to the Cramer-Rao lower bound under some geometrical and noise limitations.
机译:惯性导航系统在较短的时间间隔内会产生相当准确的测量值,而其误差变化往往会随时间增加。为了使误差保持在规格范围内,大多数系统使用GPS信号。在没有GPS数据的情况下,由于干扰或欺骗,最好使用机会信号。我们检查具有已知结构的机会信号的到达时间度量的使用。通过将最大似然位置估计量转换为凸优化问题,我们提出了一种低复杂度的半确定松弛算法。仿真结果表明,该算法在一定的几何和噪声限制下收敛于Cramer-Rao下界。

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