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Performance analysis with LMMSE for MIMO LTE on the High Altitude Platform Station

机译:高海拔平台站MIMO LTE LMMSE的性能分析

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摘要

High Altitude Platform Station (HAPs) is a new communications infrastructure that uses air balloon to carry high data rate service and wide bandwidth. One technique to make it happen is Long Term Evolution (LTE), LTE support capacity increasing, expand coverage area, data rate increasing, low latency, multi-antenna, and can be integrated with other systems. To improve the performance of LTE in capacity building, coverage area and data rate, it can use the multi-antenna techniques both on receiver or transmitter or often called multiple input multiple output (MIMO). To ensure reliability and good performance in achieving high transmission rate, it can use coherent detection which requires knowledge of the channel for accurate channel estimation. In this study, estimation that has been used is the Linear Minimum Mean Square Error (LMMSE). Channel estimation is used to find out information about the channel condition between the transmitter and the receiver so that the performance of Bit Error Rate (BER) increase and expand the coverage area of the same BER compared without estimation. In addition, modulation level, train velocity and Signal to Noise Ratio (SNR) can also affect the amount of BER at the receiver.
机译:高海拔平台站(HAPS)是一种新的通信基础设施,使用气球携带高数据速率服务和宽带宽。一种使其发生的技术是长期演进(LTE),LTE支持容量增加,扩展覆盖面积,数据速率增加,低延迟,多天线,并且可以与其他系统集成。为了提高LTE在容量建设中的性能,覆盖区域和数据速率,它可以在接收器或发射机上使用多天线技术,或者通常被称为多输入多个输出(MIMO)。为了确保可靠性和良好的性能实现高传输速率,它可以使用相干检测,这需要了解信道以进行准确的信道估计。在本研究中,已使用的估计是线性最小均方误差(LMMSE)。信道估计用于找出关于发送器和接收器之间的信道条件的信息,使得误码率(BER)的性能增加并扩展同一BER的覆盖区域而无需估计。此外,调制水平,列车速度和信噪比(SNR)也可以影响接收器处的BER的量。

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