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Receiver Autonomous Integrity Monitoring of GNSS Signals for Electronic Toll Collection

机译:用于电子收费的GNSS信号的接收器自主完整性监控

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摘要

Various road user charging mechanisms are used to control traffic and its resulting pollution, as well as revenue sources for reinvestment in the road infrastructure. Among them, electronic toll collection (ETC) systems based on user positions estimated with Global Navigation Satellite Systems (GNSS) are particularly attractive due to their flexibility and reduced roadside infrastructure in comparison to other systems such as tollbooths. Because GNSS positioning may be perturbed by different errors and failures, ETC systems, as liability critical applications, should monitor the integrity of GNSS signals in order to limit the use of faulty positions and the consequent charging errors. The integrity-monitoring systems have been originally designed for civil aviation; hence, they need to be adapted to the ETC requirements. This paper studies the use of receiver autonomous integrity monitoring (RAIM), which are algorithms run within the GNSS receiver and, therefore, are easier to tune to ETC needs than other systems based on external information. The weighted least squares residual RAIM used in civil aviation is analyzed, and an algorithm modification for ETC is proposed. Simulations demonstrate that the proposed RAIM algorithm has a superior level of availability over civil-aviation-based RAIM procedures, particularly in urban environments.
机译:各种道路使用者收费机制用于控制交通及其造成的污染,以及用于对道路基础设施进行再投资的收入来源。其中,与收费站等其他系统相比,基于全球导航卫星系统(GNSS)估算的用户位置的电子收费系统(ETC)特别具有吸引力,因为它们的灵活性和减少的路边基础设施。由于GNSS定位可能会因不同的错误和故障而受到干扰,因此作为责任关键型应用程序的ETC系统应监视GNSS信号的完整性,以限制使用错误的位置和随之而来的充电错误。完整性监控系统最初是为民航设计的;因此,它们需要适应ETC的要求。本文研究了接收机自主完整性监控(RAIM)的使用,该算法是GNSS接收机中运行的算法,因此,与其他基于外部信息的系统相比,它更易于满足ETC的需求。分析了民航中加权最小二乘残差RAIM,提出了ETC算法的改进。仿真表明,与基于民航的RAIM程序相比,所提出的RAIM算法具有更高的可用性,尤其是在城市环境中。

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