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A Proposal of a Troposphere Model in a GNSS Simulator for VANET Applications

机译:用于VNSS模拟器的对流层模型的提案

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摘要

Vehicle positioning is becoming an important issue related to Intelligent Transportation Systems (ITSs). Novel vehicles and autonomous vehicles need to be localized under different weather conditions and it is important to have a reliable positioning system to track vehicles. Satellite navigation systems can be a key technology in providing global coverage and providing localization services through many satellite constellations such as GPS, GLONASS, Galileo and so forth. However, the modeling of positioning and localization systems under different weather conditions is not a trivial objective especially considering different factors such as receiver sensitivity, dynamic weather conditions, propagation delay and so forth. This paper focuses on the use of simulators for performing different kinds of tests on Global Navigation Satellite System (GNSS) systems in order to reduce the cost of the positioning testing under different techniques or models. Simulation driven approach, combined with some specific hardware equipment such as receivers and transmitters can characterize a more realistic scenario and the simulation can consider other aspects that could be complex to really test. In this work, the main contribution is the introduction of the Troposphere Collins model in a GNSS simulator for VANET applications, the GPS-SDR-SIM software. The use of the Collins model in the simulator allows to improve the accuracy of the simulation experiments throughout the reduction of the receiver errors.
机译:车辆定位正成为与智能交通系统(ITS)相关的重要问题。新颖的车辆和自主车辆需要在不同的天气条件下定位,并且具有可靠的定位系统来跟踪车辆。卫星导航系统可以是通过许多卫星星座提供全球覆盖并提供本地化服务,例如GPS,Glonass,伽利略等,提供本地化服务。然而,在不同天气条件下的定位和定位系统的建模不是琐碎的物镜,特别是考虑不同因素,例如接收器灵敏度,动态天气条件,传播延迟等。本文侧重于使用模拟器在全球导航卫星系统(GNSS)系统上执行不同类型的测试,以降低不同技术或模型下定位测试的成本。仿真驱动方法,结合一些特定的硬件设备,如接收器和发射器可以表征更现实的场景,并且模拟可以考虑可能复杂的其他方面以进行复杂的真正测试。在这项工作中,主要贡献是引入对流层柯林斯模型的GNSS模拟器,用于VPS-SDR-SIM软件。在模拟器中使用柯林斯模型允许在整个减少接收器错误的过程中提高模拟实验的准确性。

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