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Self-encoded spread spectrum for GNSS applications

机译:GNSS应用的自编码扩频

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Self-encoded spread spectrum systems derive spreading codes from the data stream and have been shown to achieve a 3dB power gain while providing time diversity for robust performance in wireless fading channels. Since the receiver does not knowledge of the initial spreading code, these systems present a unique challenge to code synchronization. In this paper, we present a method to achieve code acquisition. The receiver employs chip-offset correlation to provide a reliable estimate of the initial code from the spread spectrum signal. A method for tracking signal timing is also explored. This method is also extended to take advantage of the unique features of SESS. Simulations show that accurate timing information can be obtained both from correlation and iterative detection, with the combined detection providing a 3dB improvement in timing tracking for GNSS applications.
机译:自编码扩频系统从数据流中获得扩频码,并已证明可实现3dB的功率增益,同时为无线衰落信道中的鲁棒性能提供时间分集。由于接收机不了解初始扩展码,因此这些系统对码同步提出了独特的挑战。在本文中,我们提出了一种实现代码获取的方法。接收器采用码片偏移相关性,以从扩频信号中提供对初始码的可靠估计。还探索了一种跟踪信号时序的方法。还扩展了此方法以利用SESS的独特功能。仿真表明,可以从相关和迭代检测中获得准确的定时信息,而组合检测为GNSS应用的定时跟踪提供了3dB的改进。

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