Some design aspects of mobile local positioning systems

H. Saarnisaari
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引用次数: 3

Abstract

New radio technology suit very well to implement mobile positioning systems, because the future signals are wideband and software radio (SDR) defined platforms are used for implementation. If the used communication system is not sufficient for required positioning purposes, the SDR principle allows that the same platform is used or divided by a positioning system. These positioning systems function anywhere where the underlying communication systems have a sufficient coverage for positioning. Alternatively, a sufficient coverage can be guaranteed locally by establishing a positioning network. These local mobile positioning systems serve as a backup to or as a more robust alternative to global navigation satellite systems that are known to be rather vulnerable to interference. In this paper some design aspects of interference immune local mobile positioning systems are considered. The considered topics include a short introduction to the Finnish Software Defined Radio Programme, which covers both communications and positioning systems in the same platform. Topics considered herein include also positioning network design, delay estimation in frequency hopping systems with few samples and interference mitigation techniques both for single antenna and adaptive antenna receivers.
移动局部定位系统的一些设计方面
新的无线电技术非常适合实现移动定位系统,因为未来的信号是宽带的,并且使用软件无线电(SDR)定义的平台来实现。如果使用的通信系统不足以满足所需的定位目的,SDR原则允许使用相同的平台或由一个定位系统划分。这些定位系统在底层通信系统有足够的定位覆盖范围的任何地方发挥作用。另一种方法是通过建立定位网络来保证局部的充分覆盖。这些本地移动定位系统作为全球导航卫星系统的备用或更强大的替代方案,众所周知,全球导航卫星系统相当容易受到干扰。本文讨论了抗干扰局部移动定位系统的设计问题。审议的主题包括对芬兰软件无线电方案的简短介绍,该方案涵盖同一平台中的通信和定位系统。本文考虑的主题还包括定位网络设计、少样本跳频系统的延迟估计以及单天线和自适应天线接收器的干扰缓解技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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