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Performance of the Proposed Galileo CBOC Modulation in Heavy Multipath Environment

机译:建议的Galileo CBOC调制在重多径环境中的性能

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摘要

In the framework of the modernization plans of Global Navigation Satellite Systems (GNSS) a new Multiplexed Binary Offset Carrier (MBOC) modulation has been proposed as a possible Signal-In-Space (SIS) with improved performance with respect to the robustness against external sources of degradation. Discussion around such signal format are still on-going at the time of writing, anyway it is the most probable candidate signal that will be adopted by both GPS L1C and the Galileo E1 Open Service (OS) signals [(http://ec.europa.eu/dgs/energy_transport/galileo/documents/doc/2004_06_21_summit_2004_en.pdf, 2004)] as modernization of the present BOC(1,1). In the context of the integration between wireless communication and satellite navigation, one of the major problems is that usually the GNSS receiver has to work in a critical environment characterized by a heavy presence of multipath or interference sources. Some examples are urban canyons or light indoor spaces. These are also typical situations for the usage of personal communications systems. The new MBOC modulation have been studied with the specific goal to create a signal more robust with respect to multipath, bringing the high performance of Galileo in situations in which the present BOC(1,1) shows limitations. In this sense, future Location Based Services (LBS) provided on the basis of the GNSS OS will benefits from this intrinsic robustness of the signal. Throughout the paper a review of the MBOC structure will be presented, specifying that in the Galileo framework such a structure has been proposed in a version named Composite BOC (CBOC). In particular, the paper presents the simulation of the CBOC behavior in presence of multipath showing the extreme improvement with respect to other BOC solutions.
机译:在全球导航卫星系统(GNSS)现代化计划的框架内,已经提出了一种新的多路复用二进制偏移载波(MBOC)调制,作为一种可能的空间信号(SIS),在针对外部信号源的鲁棒性方面具有改进的性能退化。在撰写本文时,有关这种信号格式的讨论仍在进行中,无论如何,GPS L1C和Galileo E1开放服务(OS)信号都将采用最可能的候选信号[[http:// ec。 europa.eu/dgs/energy_transport/galileo/documents/doc/2004_06_21_summit_2004_en.pdf,2004)]作为当前BOC(1,1)的现代化。在无线通信和卫星导航之间的集成的情况下,主要问题之一是通常GNSS接收机必须在以多径或干扰源大量存在为特征的关键环境中工作。一些示例是城市峡谷或明亮的室内空间。这些也是使用个人通信系统的典型情况。已经研究了新的MBOC调制,其特定目标是创建相对于多径更鲁棒的信号,从而在当前BOC(1,1)显示局限性的情况下实现伽利略的高性能。从这个意义上讲,未来基于GNSS OS提供的基于位置的服务(LBS)将受益于信号的这种固有鲁棒性。在整篇文章中,将对MBOC结构进行回顾,并指出在Galileo框架中已提出了一种名为Composite BOC(CBOC)的结构。特别是,本文介绍了在存在多路径的情况下对CBOC行为的仿真,与其他BOC解决方案相比,该方法具有极大的改进。

著录项

  • 来源
    《Wireless Personal Communications》 |2008年第3期|323-339|共17页
  • 作者单位

    Istituto Superiore Mario Boella Corso Castelfidardo 30/A Turin 10138 Italy;

    Istituto Superiore Mario Boella Corso Castelfidardo 30/A Turin 10138 Italy;

    Electronic Department Politecnico di Torino C. 50 Duca degli Abruzzi. 24 Turin 10129 Italy;

    Electronic Department Politecnico di Torino C. 50 Duca degli Abruzzi. 24 Turin 10129 Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Galileo; GPS; MBOC; CBOC; Multipath;

    机译:伽利略;GPS;MBOC;CBOC;多径;

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