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首页> 外文期刊>EURASIP journal on advances in signal processing >Direct Position Determination of Multiple Radio Signals
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Direct Position Determination of Multiple Radio Signals

机译:直接确定多个无线电信号

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The most common methods for position determination of radio signal emitters such as communications or radar transmitters are based on measuring a specified parameter such as angle of arrival (AOA) or time of arrival (TOA) of the signal. The measured parameters are then used to estimate the transmitter's location. Since the measurements are done at each base station independently, without using the constraint that the AOA/TOA estimates at different base stations should correspond to the same transmitter's location, this is a suboptimal location determination technique. Further, if the number of array elements at each base station is , and the signal waveforms are unknown, the number of cochannel simultaneous transmitters that can be localized by AOA is limited to . Also, most AOA algorithms fail when the sources are not well angularly separated. We propose a technique that uses exactly the same data as the common AOA methods but the position determination is direct. The proposed method can handle more than cochannel simultaneous signals. Although there are many stray parameters, only a two-dimensional search is required for a planar geometry. The technique provides a natural solution to the measurements sources association problem that is encountered in AOA-based location systems. In addition to new algorithms, we provide analytical performance analysis, Cramér-Rao bounds and Monte Carlo simulations. We demonstrate that the proposed approach frequently outperforms the traditional AOA methods for unknown as well as known signal waveforms.
机译:用于确定无线电信号发射器(例如通信或雷达发射器)的位置的最常见方法是基于测量特定参数,例如信号的到达角(AOA)或到达时间(TOA)。然后,将测得的参数用于估算变送器的位置。由于测量是在每个基站独立完成的,没有使用不同基站的AOA / TOA估计值应对应于同一发射机位置的约束,因此这是次优的位置确定技术。此外,如果在每个基站处的阵列元件的数量是,并且信号波形是未知的,则可以由AOA定位的同信道同时发送器的数量限制为。同样,当光源没有很好地分开角度时,大多数AOA算法也会失败。我们提出一种技术,该技术使用与常见AOA方法完全相同的数据,但位置确定是直接的。所提出的方法可以处理更多的同信道同时信号。尽管杂散参数很多,但是对于平面几何形状仅需要二维搜索。该技术为基于AOA的定位系统中遇到的测量源关联问题提供了自然的解决方案。除了新算法之外,我们还提供分析性能分析,Cramér-Rao边界和蒙特卡洛模拟。我们证明,对于未知和已知信号波形,所提出的方法通常优于传统的AOA方法。

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