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A Position Approach Based on the Special Sub-frame in TDD LTE-A System

机译:TDD LTE-A系统中基于特殊子帧的定位方法

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With the urgent need for indoor and outdoor seamless navigation service, it is imperative to develop high precise positing technique suitable for various scenarios. In this paper, considering the widely deployment and well coverage of the wireless cellular communication system, a position approach is proposed based on time duplex division long term evolution advanced (TDD LTE-A) network. A novel complex frame structure for positing is proposed based on the current TDD LTE-A protocol. In GP (Guard Period) of the special sub-frame, i.e., the downlink-uplink switch period of TDD system, the navigation (NV) signal is added for positing. NV signals are transmitted simultaneously from different base station (BS) with orthogonal PN (Pseudo Noise) code. By measuring the distance to different BSs which are time synchronized in TDD system, user's position can be fixed as in the GNSS system. In this paper, the theoretical performance of the proposed position scheme will be analyzed, and the impact to the current system will also be discussed. The results show that, by properly allocating the time length of NV signal based on the coverage of the cell, signal conflicts with the current LTE-A signal can be effectively avoided.
机译:随着对室内和室外无缝导航服务的迫切需求,迫切需要开发适合各种场景的高精度定位技术。在本文中,考虑到无线蜂窝通信系统的广泛部署和良好的覆盖范围,提出了一种基于时分双工长期演进高级(TDD LTE-A)网络的定位方法。基于当前的TDD LTE-A协议,提出了一种新颖的复合帧结构。在特殊子帧的GP(保护时段)中,即TDD系统的下行链路-上行链路切换时段中,添加了导航(NV)信号以进行定位。 NV信号是通过正交PN(伪噪声)码从不同的基站(BS)同时发送的。通过测量到在TDD系统中时间同步的不同BS的距离,可以像在GNSS系统中一样固定用户的位置。在本文中,将分析所提出的位置方案的理论性能,并讨论其对当前系统的影响。结果显示,通过基于小区的覆盖范围适当地分配NV信号的时间长度,可以有效地避免与当前LTE-A信号的信号冲突。

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