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Stand-Alone and Hybrid Positioning Using Asynchronous Pseudolites

机译:使用异步伪卫星的独立定位和混合定位

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global navigation satellite system (GNSS) receivers are usually unable to achieve satisfactory performance in difficult environments, such as open-pit mines, urban canyons and indoors. Pseudolites have the potential to extend GNSS usage and significantly improve receiver performance in such environments by providing additional navigation signals. This also applies to asynchronous pseudolite systems, where different pseudolites operate in an independent way. Asynchronous pseudolite systems require, however, dedicated strategies in order to properly integrate GNSS and pseudolite measurements. In this paper, several asynchronous pseudolite/GNSS integration strategies are considered: loosely- and tightly-coupled approaches are developed and combined with pseudolite proximity and receiver signal strength (RSS)-based positioning. The performance of the approaches proposed has been tested in different scenarios, including static and kinematic conditions. The tests performed demonstrate that the methods developed are effective techniques for integrating heterogeneous measurements from different sources, such as asynchronous pseudolites and GNSS.
机译:全球导航卫星系统(GNSS)接收器通常在露天矿,城市峡谷和室内等困难环境中无法获得令人满意的性能。伪卫星有可能通过提供其他导航信号来扩展GNSS使用并在这种环境中显着提高接收器性能。这也适用于异步伪卫星系统,其中不同的伪卫星以独立的方式运行。但是,异步伪卫星系统需要专用策略才能正确集成GNSS和伪卫星测量。在本文中,考虑了几种异步伪卫星/ GNSS集成策略:开发了松散耦合和紧密耦合的方法,并将其与伪卫星邻近性和基于接收器信号强度(RSS)的定位相结合。所提出方法的性能已在包括静态和运动条件在内的不同场景中进行了测试。进行的测试表明,所开发的方法是整合来自不同来源(例如异步伪卫星和GNSS)的异构测量的有效技术。

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