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OGSR: A Low Complexity Galileo Software Receiver using Orthogonal Data and Pilot Channels

机译:OGSR:使用正交数据和导频通道的低复杂度伽利略软件接收器

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摘要

To improve localisation accuracy and multipath rejection, the Galileo-OS signal offers a new modulation with efficient power distribution technique between the two data and pilot navigation components. To achieve the full benefits of this modulation, a robust acquisition and tracking methods must be deployed. For example, using two parallel correlation channels to acquire these data and pilot will gain 3dB over using a single channel acquisition correlating with either one of them. However, dual channel SW receivers cost more processing overheads. In this paper, the authors propose to orthogonalise the received data and pilot signals so to enable their acquisition in a single correlation channel bandpass sampling receiver. Our simulation results, using Simulink, prove that OGSR performance is maintained (preserving the 3dB gain) with less processing time while the implementation complexity is reduced by 50%.
机译:为了提高定位精度和多径抑制,Galileo-OS信号提供了一种新的调制方式,在两个数据和飞行员导航组件之间采用了有效的功率分配技术。为了获得这种调制的全部好处,必须采用可靠的捕获和跟踪方法。例如,使用两个并行相关信道获取这些数据,并且导频将比使用与其中任何一个相关的单个信道获取获得3dB的增益。但是,双通道SW接收机的处理开销更大。在本文中,作者提议将接收到的数据和导频信号正交化,以使其能够在单个相关信道带通采样接收机中进行采集。我们使用Simulink进行的仿真结果证明,以较少的处理时间即可保持OGSR性能(保留3dB增益),同时实现复杂度降低了50%。

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