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Real-time dual frequency software receiver

机译:实时双频软件接收器

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A software based, real time, navigational receiver is described. This provides high-accuracy and flexible operation using C/A, P and M codes. The receiver has improved dynamic performance and anti-jam capabilities. It allows incorporation of novel architectures such as those using Ultra Tight Coupling, RTK type processing, etc. New and future signals (such as Galileo) can be easily incorporated. The block processing architecture enables improved dynamic performance, anti-jam capability, faster acquisition, less susceptibility to multipath, robust performance, easy transition to GPS/INS integration, and RTK processing. The flexible, re-configurable, software based, real time receiver will allow test and measurement of a variety of receiver architectures. These in conjunction with the data recorder will allow both real-time and off-line test of new signals and performance of receivers under difficult conditions. This paper describes the structure, operation and performance of a real-time dual frequency software GPS receiver. The receiver consists of the hardware front-end which downconverts and digitizes the signals from L1 and L2 frequencies, followed by the FPGA which performs signal correlation. The correlator output is fed to the PC which then continues signal processing entirely using software. The dual frequency processing is performed using semicodeless technique which provides independent carrier and code tracking of the L2 signal. Software processing of the signals has been extended to include advanced signal processing techniques such as beamforming, interference rejection, multipath mitigation etc. Addition of any novel type of processing using software approach is greatly simplified. This reduces development time and effort by an order of magnitude and at the same time allows the benefits of software receiver while achieving the real-time performance.
机译:描述了一种基于软件的实时导航接收机。使用C / A,P和M代码可提供高精度和灵活的操作。接收器具有改进的动态性能和抗干扰能力。它允许合并新颖的体系结构,例如使用超紧密耦合,RTK类型处理的体系结构等。可以轻松地合并新的和将来的信号(例如Galileo)。块处理体系结构可提高动态性能,抗干扰能力,更快的采集速度,对多径的敏感性较小,性能稳定,易于过渡到GPS / INS集成和RTK处理。灵活的,可重新配置的,基于软件的实时接收器将允许测试和测量各种接收器架构。这些与数据记录器的结合将允许对新信号进行实时和离线测试,以及在困难条件下的接收机性能。本文描述了实时双频软件GPS接收机的结构,操作和性能。接收器由硬件前端组成,该硬件对来自L1和L2频率的信号进行下变频和数字化,然后是执行信号相关的FPGA。相关器输出被馈送到PC,然后PC完全使用软件继续进行信号处理。使用无码技术执行双频处理,该技术提供了L2信号的独立载波和码跟踪。信号的软件处理已扩展到包括先进的信号处理技术,例如波束成形,干扰抑制,多径缓解等。使用软件方法添加任何新颖类型的处理都得到了极大的简化。这将开发时间和工作量减少了一个数量级,同时在实现实时性能的同时还带来了软件接收器的优势。

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