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A New Differential Positioning Method using Modulation Correlation of Signals of Opportunity

机译:一种新的差分定位方法,使用机会信号的调制相关性

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Global Navigation Satellite Systems (GNSS) have become the positioning systems of choice for many applications. However, GNSS signals are susceptible to obstruction, interference and jamming. Therefore, to maximize robustness and integrity, it is necessary to employ a dissimilar positioning technology that can operate independently and back-up GNSS. One such technology exploits 'signals of opportunity' - signals that are designed for purposes other than navigation. This paper presents a system that uses amplitude modulation (AM) radio broadcasts in the medium frequency (MF) band. At these frequencies, the predominant ground-wave propagation mode offers better coverage in remote areas and over sea than is achievable with higher frequency signals. The system is differential and operates by correlating modulation information between the reference and user receivers. A system of this form mitigates the deterioration in and around buildings encountered in prior systems and can provide absolute position using fewer signals than a system using only carrier phase. The system presented in this paper uses generalized cross correlation to obtain time difference of arrival measurements that are subsequently used for position determination. Preliminary results indicate the system provides a robust position solution. Moreover, the system offers the potential to be combined with carrier phase measurements to achieve enhanced performance, while the modulation correlation technique is readily extendable to other types of signal.
机译:全球导航卫星系统(GNSS)已成为许多应用选择的定位系统。然而,GNSS信号易于阻塞,干扰和干扰。因此,为了使鲁棒性和完整性最大化,有必要采用不同的定位技术,可以独立地操作和备用GNSS。一种这样的技术利用“机会信号” - 以导航以外的目的为设计的信号。本文介绍了一种使用中频(MF)频带中的幅度调制(AM)无线电广播的系统。在这些频率下,主要的接地波传播模式在偏远地区和大海中提供更好的覆盖范围,而不是具有更高频率信号的偏远地区。该系统是差的,并且通过将参考和用户接收器之间的调制信息相关联来进行差异。这种形式的系统减轻了在现有系统中遇到的建筑物的劣化,并且可以使用较少的信号提供的绝对位置而不是使用载波相位的系统。本文呈现的系统使用广义交叉相关来获得随后用于位置测量的到达测量的时间差。初步结果表明系统提供了稳健的位置解决方案。此外,该系统提供了与载波相位测量结合的电位,以实现增强的性能,而调制相关技术易于扩展到其他类型的信号。

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