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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Efficient Delay Tracking Methods with Sidelobes Cancellation for BOC-Modulated Signals
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Efficient Delay Tracking Methods with Sidelobes Cancellation for BOC-Modulated Signals

机译:带有旁瓣抵消的BOC调制信号的高效延迟跟踪方法

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In positioning applications, where the line of sight (LOS) is needed with high accuracy, the accurate delay estimation is an important task. The new satellite-based positioning systems, such as Galileo and modernized GPS, will use a new modulation type, that is, the binary offset carrier (BOC) modulation. This type of modulation creates multiple peaks (ambiguities) in the envelope of the correlation function, and thus triggers new challenges in the delay-frequency acquisition and tracking stages. Moreover, the properties of BOC-modulated signals are yet not well studied in the context of fading multipath channels. In this paper, sidelobe cancellation techniques are applied with various tracking structures in order to remove or diminish the side peaks, while keeping a sharp and narrow main lobe, thus allowing a better tracking. Five sidelobe cancellation methods (SCM) are proposed and studied: SCM with interference cancellation (IC), SCM with narrow correlator, SCM with high-resolution correlator (HRC), SCM with differential correlation (DC), and SCM with threshold. Compared to other delay tracking methods, the proposed SCM approaches have the advantage that they can be applied to any sine or cosine BOC-modulated signal. We analyze the performances of various tracking techniques in the presence of fading multipath channels and we compare them with other methods existing in the literature. The SCM approaches bring improvement also in scenarios with closely-spaced paths, which are the most problematic from the accurate positioning point of view.
机译:在需要高精度视线(LOS)的定位应用中,准确的延迟估计是一项重要的任务。新的基于卫星的定位系统(例如Galileo和现代化的GPS)将使用新的调制类型,即二进制偏移载波(BOC)调制。这种类型的调制会在相关函数的包络中创建多个峰值(模糊度),从而在延迟频率采集和跟踪阶段引发新的挑战。而且,在衰落的多径信道的情况下,尚未对BOC调制信号的特性进行很好的研究。在本文中,旁瓣消除技术应用于各种跟踪结构,以便在保持尖锐且狭窄的主瓣的同时消除或减小旁峰,从而实现更好的跟踪。提出并研究了五种旁瓣消除方法(SCM):带干扰消除(IC)的SCM,具有窄相关器的SCM,具有高分辨率相关器(HRC)的SCM,具有差分相关器(DC)的SCM和具有阈值的SCM。与其他延迟跟踪方法相比,提出的SCM方法具有可将其应用于任何正弦或余弦BOC调制信号的优势。我们分析了衰落的多径信道存在下各种跟踪技术的性能,并将它们与文献中存在的其他方法进行了比较。 SCM方法在路径紧密间隔的场景中也带来了改进,这从精确定位的角度来看是最成问题的。

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