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Multidimensional resource allocation strategy for high-speed railway MIMO-OFDM system

机译:高速铁路MIMO-OFDM系统的多维资源分配策略

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摘要

With the wide deployment of high-speed railway at more than 300 kilometers per hour, providing various services effectively for users in the train becomes both practical demand and interesting challenge for wireless communication. Resource allocation problem in high-speed railway communication system is one of the key issues to improve the efficiency of resource utilization. In this paper, we propose a multidimensional resource allocation strategy for high-speed railway downlink orthogonal frequency-division multiplexing (OFDM) system with multiple-input multiple-output (MIMO) antennas. Sub-carrier, antenna, time slot, and power are considered jointly, which is modeled as a nonlinear integer programming problem. The effect of the moving speed on inter-carrier interference is analyzed to calculate the transmitted power. The objective is to minimize the total transmitted power while satisfying quality of service requirement of each user. Moreover, optimal and approximate solutions are obtained by linearization and quadratic fitting, respectively. Simulation results have proved that approximate solution has lower total transmitted power than optimal solution while the computation complexity is higher.
机译:随着每小时300多公里的高速铁路的广泛部署,有效地为火车上的用户提供各种服务已成为无线通信的实际需求和有趣的挑战。高速铁路通信系统中的资源分配问题是提高资源利用效率的关键问题之一。本文针对具有多输入多输出(MIMO)天线的高速铁路下行链路正交频分复用(OFDM)系统提出了多维资源分配策略。子载波,天线,时隙和功率被共同考虑,这被建模为非线性整数规划问题。分析移动速度对载波间干扰的影响,以计算发射功率。目的是在满足每个用户的服务质量要求的同时最小化总发射功率。此外,分别通过线性化和二次拟合获得最佳和近似解。仿真结果表明,近似解比最优解具有更低的总发射功率,同时计算复杂度更高。

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