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Transmit Power Minimization and Base Station Planning for High-Speed Trains with Multiple Moving Relays in OFDMA Systems

机译:OFDMA系统中具有多个移动中继的高速列车的发射功率最小化和基站规划

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摘要

High-speed railway system equipped with moving relay stations placed on the middle of the ceiling of each train wagon is investigated. The users inside the train are served in two hops via the orthogonal frequency-division multiple access (OFDMA) technology. In this work, we first focus on minimizing the total downlink power consumption of the base station (BS) and the moving relays while respecting specific quality of service (QoS) constraints. We first derive the optimal resource allocation solution in terms of OFDMA subcarriers and power allocation using the dual decomposition method. Then, we propose an efficient algorithm based on the Hungarian method in order to find a suboptimal but low complexity solution. Moreover, we propose an OFDMA planning solution for high-speed train by finding the maximal inter-BS distance given the required user data rates in order to perform seamless handover. Our simulation results illustrate the performance of the proposed resource allocation schemes in the case of the 3GPP Long Term Evolution-Advanced (LTE-A) and compare them with previously developed algorithms as well as with the direct transmission scenario. Our results also highlight the significant planning gain obtained thanks to the use of multiple relays instead of the conventional single relay scenario.
机译:对高速铁路系统进行了研究,该系统在每个火车车顶的中央都装有移动中继站。火车内的用户通过正交频分多址(OFDMA)技术在两跳中得到服务。在这项工作中,我们首先关注最小化基站(BS)和移动中继的总下行链路功耗,同时注意特定的服务质量(QoS)约束。我们首先使用对偶分解方法,根据OFDMA子载波和功率分配来推导最佳资源分配解决方案。然后,我们提出了一种基于匈牙利方法的高效算法,以找到次优但复杂度较低的解决方案。此外,我们通过在给定所需的用户数据速率的情况下找到最大的BS间距离来执行无缝切换,从而为高速列车提出了OFDMA规划解决方案。我们的仿真结果说明了在3GPP高级长期演进(LTE-A)情况下所提出的资源分配方案的性能,并将其与先前开发的算法以及直接传输方案进行了比较。我们的结果还突出表明,由于使用了多个继电器而不是传统的单个继电器方案,因此获得了可观的规划收益。

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