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Performances of a New Correlation Algorithm for a Platform-independent GPS Software Receiver

机译:一种独立于平台GPS软件接收器新相关算法的性能

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摘要

Personal Digital Assistants (PDA's) or mobile phones applications are not anymore restricted to wireless communications or multimedia, but have been extended to handle Global Navigation Satellite System (GNSS) functionalities. Consequently, the growing market of GNSS capable mobile devices is driving the interest of software solutions as they provide several advantages with respect to the conventional hardware architectures currently implemented in the mass market receivers. First, they share the same system resources such as the processor, embedded memory and power with other system units, reducing both the size and the costs of their integration. Second, they can be easily reprogrammed - via firmware updates - for incorporating the latest developments, such as the exploitation of the future GNSS signals or some improved multipath mitigation techniques. Finally, they offer a more flexible solution for rapid research and development as compared to conventional hardware receivers where the chip design is fixed and obtained after a very long integration process. This paper will first introduce the challenges of the software implementation of a GNSS receiver, with a main focus given to the base-band processing and the correlation issues. It will then describe the already existing solutions with their respective advantages and drawbacks, and provide an estimation of their complexity in term of computational load. From this, a new developed algorithm will be introduced, and its performances in term of integer operations needed to perform the correlation analyzed and compared to the other solutions.
机译:个人数字助理(PDA)或移动电话应用程序不再限于无线通信或多媒体,但已扩展以处理全球导航卫星系统(GNSS)功能。因此,由于它们为当前在大众市场接收器中实现的传统硬件架构提供了几个优点,因此可以推动软件解决方案的越来越多的移动设备的兴​​趣。首先,它们与其他系统单元共享相同的系统资源,例如处理器,嵌入式内存和电源,从而减少其集成的大小和成本。其次,它们可以轻松地重新编程 - 通过固件更新 - 结合最新的发展,例如对未来GNSS信号的开发或一些改进的多径缓解技术。最后,与芯片设计固定的传统硬件接收器相比,它们提供了更灵活的解决方案,以便在很长的集成过程之后获得芯片设计的传统硬件接收器。本文将首先介绍GNSS接收器的软件实现的挑战,主要焦点给出了基带处理和相关问题。然后,它将描述具有各自的优点和缺点的已经存在的解决方案,并在计算负载期间提供它们的复杂性估计。由此,将介绍一种新的发达算法,并且其在执行分析和与其他解决方案中进行相关性的整数操作期间的性能。

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