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Performance of new BOC-AW-modulated signals for GNSS system

机译:用于GNSS系统的新BOC-AW调制信号的性能

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In this paper, we propose efficient signal waveforms (WFs) with optimized spectrum for multipath (MP) mitigation and jamming reduction in global navigation satellite system. These WFs are based on the use of sine-phased binary offset carrier (BOC) with adjustable width (BOC-AW). They are generated by adjusting the width of the three-level WF {-1, 0, 1}. By exploiting the three-level BOC-AW subcarriers in sine-phasing signal model, we developed several forms of BOC-AW by means of superposition and width adjustment. The resulting power spectral densities and autocorrelation functions of the proposed WFs were calculated and introduced. Also calculated were the spectral separation coefficients (SSCs) and the Cramér-Rao lower bounds (CRLBs). The SSCs and CRLBs prove the efficiency of the proposed WFs in terms of interference separation. In addition, the simulation results show that the proposed WFs present better performances in MP mitigation compared to the WFs adopted by the Galileo and global positioning system modernization.
机译:在本文中,我们提出了具有优化频谱的有效信号波形(WFs),用于全球导航卫星系统中的多径(MP)缓解和干扰抑制。这些WF基于使用可调整宽度(BOC-AW)的正弦相位二进制偏移载波(BOC)。它们是通过调整三级WF {-1,0,1}的宽度来生成的。通过在正弦相位信号模型中利用三级BOC-AW子载波,我们通过叠加和宽度调整开发了几种形式的BOC-AW。计算并引入了所提出的WF的功率谱密度和自相关函数。还计算了光谱分离系数(SSC)和Cramér-Rao下限(CRLB)。 SSC和CRLB在干扰分离方面证明了拟议WF的效率。此外,仿真结果表明,与伽利略和全球定位系统现代化采用的WF相比,拟议的WF在MP缓解方面表现出更好的性能。

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