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Location and communication using cooperative RADAR system dedicated to guided transports

机译:使用专用于引导运输的协作RADAR系统进行定位和通信

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Nowadays, automated systems and sensors are being developed to improve reliability, safety and offer new exploitation modes in guided transports. In maritime and airway domains, many intelligent systems are used for simultaneous location and exchange of information. However, in guided transports domain, no system is nowadays able to ensure the both functionalities. This paper presents a new system called CODIBDT (communication, detection and identification of broken-down trains) allowing multi-user access and combining the two main functionalities, location and high data rate communication, using a cooperative collision avoidance radar transponder inside targets (train, metro, etc.). The proposed system is made of a couple of microwave transmitting and receiving equipments fixed on each train, one ahead and other behind. The sensor uses a matched digital correlation receiver in order to detect the position, compute the distance towards the preceding vehicle and get its status and identification. This radar exploits two frequencies, 2.2 GHz for transmitting and 2.4 GHz for receiving. The distance to the targets is measured, in real time, with a resolution of 3 m in a range of 800 m in tunnel and 500 m in open space using a transmitted power about 600 mW. To allow multi-user access and to combine the two main functionalities, two original multiplexing methods called SSS2 (sequential spreading spectrum technique) and CPM (code position modulation) are performed. This study is focused on the comparison between the two methods in terms of bit error rate, degree of complexity and data rate.
机译:如今,正在开发自动化系统和传感器,以提高可靠性,安全性并在引导运输中提供新的开采方式。在海事和空中航线领域,许多智能系统用于同时定位和交换信息。然而,在引导运输领域,如今没有系统能够确保这两种功能。本文提出了一种新的系统,称为CODIBDT(故障列车的通信,检测和识别),该系统允许多用户访问,并使用目标(列车)内部的协作式防撞雷达应答器将定位和高数据速率通信这两个主要功能结合在一起,地铁等)。提议的系统由固定在每列火车上的一对微波发射和接收设备组成,一个在前面,另一个在后面。传感器使用匹配的数字相关接收器以检测位置,计算到前一辆车辆的距离并获取其状态和标识。该雷达利用两个频率,即2.2 GHz进行发送和2.4 GHz进行接收。到目标的距离是实时测量的,分辨率为3 m,在隧道中800 m范围内,在露天空间500 m范围内,使用约600 mW的发射功率。为了允许多用户访问并结合两个主要功能,执行了两种原始的复用方法,称为SSS2(顺序扩频技术)和CPM(代码位置调制)。这项研究集中于两种方法在误码率,复杂度和数据率方面的比较。

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