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Optimal Allocation of Radio Resource in Cellular LTE Downlink Based on Truncated Dynamic Programming under Uncertainty

机译:不确定情况下基于截断动态规划的蜂窝LTE下行链路中无线资源的最优分配

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In the Cellular Long-Term Evolution (LTE) downlink, the smallest radio resource unit a Scheduler can assign to a user is a Resource Block (RB). Each RB consists of twelve (12) adjacent Orthogonal Frequency Division Multiplexing (OFDM) sub-carriers with inter-subcarrier spacing of 15 kHz. Over the years, researchers have investigated the problem of radio resource allocation in cellular LTE downlink and have made useful contributions. In an earlier paper for example, we proposed a deterministic dynamic programming based technique for optimal allocation of RBs in the downlink of multiuser Cellular LTE System. We found that this proposed methodology optimally allocates RBs to users at every transmission instant, but the computational time associated with the allocation policy was high. In the current work, we propose a truncated dynamic programming based technique for efficient and optimal allocation of radio resource. This paper also addresses uncertainty emanating from users’ mobility within a Cell coverage area. The objective is to significantly reduce the computational time and dynamically select applicable modulation scheme (i.e., QPSK, 16QAM, or 64QAM) in response to users’ mobility. We compare the proposed scheme with the Fair allocation and the earlier proposed dynamic programming based techniques. It is shown that the proposed methodology is more efficient in allocating radio resource and has better performance than both the Fair Allocation and the deterministic dynamic programming based techniques.
机译:在蜂窝长期演进(LTE)下行链路中,调度程序可以分配给用户的最小无线电资源单元是资源块(RB)。每个RB由十二(12)个相邻的正交频分复用(OFDM)子载波组成,子载波之间的间隔为15 kHz。多年来,研究人员研究了蜂窝LTE下行链路中的无线电资源分配问题,并做出了有益的贡献。例如,在较早的论文中,我们提出了一种基于确定性动态规划的技术,用于在多用户蜂窝LTE系统的下行链路中优化RB。我们发现,该提议的方法在每个传输瞬间将RB最佳地分配给用户,但是与分配策略相关的计算时间很高。在当前的工作中,我们提出了一种基于截断动态规划的技术,可以有效,优化地分配无线电资源。本文还讨论了用户在小区覆盖区域内的移动性带来的不确定性。目的是显着减少计算时间并响应用户的移动性动态选择适用的调制方案(即QPSK,16QAM或64QAM)。我们将提出的方案与公平分配以及较早提出的基于动态规划的技术进行比较。结果表明,与公平分配和基于确定性动态规划的技术相比,所提出的方法在分配无线资源方面更加有效,并且具有更好的性能。

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