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Location information-assisted opportunistic beamforming in LTE system for high-speed railway

机译:高速铁路LTE系统中的位置信息辅助机会波束成形

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Communication systems of high-speed railway have inherent disadvantages and advantages. The estimation error of direction-of-arrival (DOA) of desired users caused by channel feedback delay and high moving speed make the common beamforming technique of smart antennas work abnormally. Instead, the opportunistic beamforming (OBF) with dumb antennas which does not need channel feedback is proper for high-speed railway. As the system has linear topology, regular movement as well as predictable location and speed information, the OBF can be improved to adapt to this scenario. In this article, conventional OBF is first introduced to the communication systems of high-speed railway. By multiplying random complex on each transmit antenna, the channel fluctuation dynamic range is extended so that multiuser diversity can be exploited. And then location information is employed to assist the conventional one. Communication systems in high-speed railway have the advantage of predictable location and speed information. The improved OBF can perform closer to the performance of coherent beamforming. Numerical analysis and simulation results show that both two algorithms can improve the system performance significantly.
机译:高速铁路的通信系统具有固有的缺点和优势。信道反馈延迟和高移动速度引起的期望用户的到达方向估计误差导致智能天线常见的波束成形技术无法正常工作。取而代之的是,不需要信道反馈的带有哑天线的机会波束成形(OBF)适用于高速铁路。由于系统具有线性拓扑,规则的移动以及可预测的位置和速度信息,因此可以改进OBF以适应这种情况。在本文中,传统的OBF首先被引入到高速铁路的通信系统中。通过在每个发射天线上乘以随机复数,可以扩展信道波动动态范围,从而可以利用多用户分集。然后使用位置信息来辅助传统的位置信息。高速铁路中的通信系统具有可预测的位置和速度信息的优势。改进的OBF可以更接近相干波束成形的性能。数值分析和仿真结果表明,两种算法均可显着提高系统性能。

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