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Transmission Strategies for Throughput Maximization in High-Speed-Train Communications: From Theoretical Study to Practical Algorithms

机译:高速火车通信中吞吐量最大化的传输策略:从理论研究到实用算法

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摘要

This paper focuses on improving the downlink throughput of the base station (BS)-to-train communication link in a high-speed train (HST) scenario. First, we provide a theoretical study of the throughput maximization problem in a single-cell multiple-input–multiple-output orthogonal frequency-division multiplexing (MIMO-OFDM) train scenario with and without cooperation among carriages. The aim is to give fundamental insight into the problem rather than providing practically realizable algorithms. The theoretical study suggests that it is highly advantageous to exploit the size of the train by increasing the number of antennas and further allowing the carriages to cooperate. In the practical system-level study, we propose two low-complexity MIMO-OFDM transmission schemes, which are based on simple antenna selection (AS) methods with spatial multiplexing. The main idea is to select the best transmit antennas among different antenna combinations by comparing their estimated throughput performances. The simulation results show that the proposed algorithms outperform Long-Term Evolution (LTE)-based dynamic rank transmission schemes in terms of throughput and computational load in practical HST scenarios. Unlike the exhaustive search type of dynamic transmission schemes, our simple algorithms are also applicable to large antenna arrays. In conclusion, large antenna arrays with simple AS and spatial multiplexing transmission strategies seem to be potential solutions to the significant improvement of the throughput of the BS-to-train link in HST scenarios.
机译:本文着重于在高速列车(HST)情况下提高基站到列车通信链路的下行链路吞吐量。首先,我们提供了在单细胞多输入多输出正交频分多路复用(MIMO-OFDM)列车场景中,有无车厢之间协作的吞吐量最大化问题的理论研究。目的是提供对该问题的基本了解,而不是提供可实际实现的算法。理论研究表明,通过增加天线的数量并进一步允许车厢配合来利用火车的尺寸是非常有利的。在实际的系统级研究中,我们提出了两种低复杂度MIMO-OFDM传输方案,它们基于具有空间复用的简单天线选择(AS)方法。主要思想是通过比较估计的吞吐量性能,在不同的天线组合中选择最佳的发射天线。仿真结果表明,在实际的HST场景中,所提出的算法在吞吐量和计算负荷方面均优于基于LTE的动态秩传输方案。与穷举搜索类型的动态传输方案不同,我们的简单算法也适用于大型天线阵列。总之,在HST场景中,具有简单AS和空间复用传输策略的大型天线阵列似乎是显着提高BS到火车链路的吞吐量的潜在解决方案。

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