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首页> 外文期刊>International Journal of Distributed Sensor Networks >Vehicle location measurement method for radio-shadow area through iBeacon message:
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Vehicle location measurement method for radio-shadow area through iBeacon message:

机译:通过iBeacon消息对无线电阴影区域进行车辆位置测量的方法:

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Information communication technology related vehicle services need to support location and the transmission of communication and traffic information between vehicles, or between vehicles and infrastructure. In particular, the technology for the measurement of the accurate location of a vehicle is dependent on location-determination technology like Global Positioning System, and this technology is very important for vehicle driving and location services. If, however, a vehicle is in a Global Positioning System radio-shadow area, neither a Global Positioning System nor a Differential Global Positioning System can accurately measure the corresponding location because of a high error rate caused by the shadowing intervention. Even an Inertial Measurement Unit could provide inaccurate location data due to sensor drift faults around corners and traffic-road speed dumps. Vehicles, therefore, need an absolute location to prevent the provision of inaccurate vehicle-location data that is due to radio-shadow areas and relational Inertial Measurement Unit positions. To achieve this, we assume that vehicle-to-infrastructure communication is possible between a vehicle and roadside unit in Vehicular Ad hoc Networks. We used iBeacon at the roadside unit and revised its Universally Unique Identifier so that it generates absolute Global Positioning System location data; that is, moving vehicles can receive absolute Global Positioning System data from the roadside unit-based iBeacon. We compared the proposed method with current Global Positioning System and Inertial Measurement Unit systems for the following two cases: one with a radio-shadow area and one without. We proved that the proposed method generates location data that are more accurate than those of the other methods.
机译:与信息通信技术相关的车辆服务需要支持车辆之间或车辆与基础设施之间的位置以及通信和交通信息的传输。特别地,用于测量车辆的精确位置的技术取决于诸如全球定位系统的位置确定技术,并且该技术对于车辆驾驶和位置服务非常重要。但是,如果车辆处于“全球定位系统”无线电阴影区域,则“全球定位系统”或“差分全球定位系统”都无法准确测量相应的位置,因为阴影干预会导致较高的错误率。由于拐角处的传感器漂移故障和交通道路速度降低,甚至惯性测量单元也可能提供不准确的位置数据。因此,车辆需要一个绝对位置,以防止由于无线电阴影区域和惯性测量单元的相关位置而导致提供不准确的车辆位置数据。为了实现这一点,我们假设在车辆自组织网络中,车辆与路边单元之间可以进行车辆到基础设施的通信。我们在路边单位使用了iBeacon,并修改了其通用唯一标识符,以便生成绝对的全球定位系统位置数据;也就是说,行驶中的车辆可以从基于路边单元的iBeacon接收绝对的全球定位系统数据。在以下两种情况下,我们将所提出的方法与当前的全球定位系统和惯性测量单元系统进行了比较:一种具有无线电阴影区域,而另一种则没有。我们证明了所提出的方法所生成的位置数据比其他方法更准确。

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