Low complexity user pairing and resource allocation of heterogeneous users for uplink virtual MIMO system over LTE-A network

J. Biswas, Wei Ni, R. Liu, I. Collings, S. Jha
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引用次数: 1

Abstract

Virtual Multiple-Input Multiple-Output (MIMO) is a promising uplink technology that can meet the throughput demand of Long-Term Evolution-Advanced (LTE-A) systems. However, the complexity of scheduling virtual MIMO is a challenge; existing virtual MIMO is therefore limited to best effort applications. We investigate the resource allocation and scheduling problem in a heterogeneous virtual MIMO system where delay sensitive applications are present. The goal is to maximize the system throughput while maintaining delay bound for delay sensitive traffic. To tackle the complexity challenge, we propose two low-complexity suboptimal algorithms, where the key idea is to reduce the search space and iteratively minimize the rate loss respectively. Simulation results show that the rate loss minimization based heuristic algorithm converges to within 99% of the optimal throughput on average and maintains delay bound for delay sensitive users. It also achieves almost the same fairness performance as the optimal solution.
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基于LTE-A网络的上行虚拟MIMO系统低复杂度用户配对与异构用户资源分配
虚拟多输入多输出(MIMO)是一种很有前途的上行链路技术,可以满足LTE-A系统对吞吐量的需求。然而,调度虚拟MIMO的复杂性是一个挑战;因此,现有的虚拟MIMO仅限于尽力而为的应用。研究了异构虚拟MIMO系统中存在延迟敏感应用的资源分配和调度问题。目标是使系统吞吐量最大化,同时保持对延迟敏感的流量的延迟限制。为了解决复杂性的挑战,我们提出了两种低复杂度的次优算法,其关键思想分别是减少搜索空间和迭代最小化速率损失。仿真结果表明,基于速率损失最小化的启发式算法平均收敛到最优吞吐量的99%以内,并且对于延迟敏感用户保持了延迟界。该算法的公平性性能与最优解几乎相同。
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