Enhanced optimization assisted interference mitigation with vertical beamforming in 3D MIMO-OFDMA for 5G wireless communication network

Ranjeeta Yadav, Ashutosh Tripathi
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引用次数: 6

Abstract

Purpose Multiple input multiple-output (MIMO) has emerged as one among the many noteworthy technologies in recent wireless applications because of its powerful ability to improve bandwidth efficiency and performance, i.e. through developing its unique spatial multiplexing capability and spatial diversity gain. For carrying out an enhanced communication in next-generation networks, the MIMO and orthogonal frequency division multiple systems were combined that facilitate the spatial multiplexing on resource blocks (RBs) based on time-frequency. This paper aims to propose a novel approach for maximizing the throughput of cell-edge users and cell-center users. Design/methodology/approach In this work, the specified multi-objective function is defined as the single objective function, which is solved by the introduction of a new improved algorithm as well. This optimization problem can be resolved by the fine-tuning of certain parameters such as assigned power for RB, cell-center user, cell-edge user and RB allocation. The fine-tuning of parameters is attained by a new improved Lion algorithm (LA), termed as Lion with new cub generation (LA-NCG) model. Finally, the betterment of the presented approach is validated over the existing models in terms of signal to interference plus noise ratio, throughput and so on. Findings On examining the outputs, the adopted LA-NCG model for 4BS was 66.67%, 66.67% and 20% superior to existing joint processing coordinated multiple point-based dual decomposition method (JC-DDM), fractional programming (FP) and LA models. In addition, the throughput of conventional JC-DDM, FP and LA models lie at a range of 10, 45 and 35, respectively, at the 100th iteration. However, the presented LA-NCG scheme accomplishes a higher throughput of 58. Similarly, the throughput of the adopted scheme observed for 8BS was 59.68%, 44.19% and 9.68% superior to existing JC-DDM, FP and LA models. Thus, the enhancement of the adopted LA-NCG model has been validated effectively from the attained outcomes. Originality/value This paper adopts the latest optimization algorithm called LA-NCG to establish a novel approach for maximizing the throughput of cell-edge users and cell-center users. This is the first that work uses LA-NCG-based optimization that assists in fine-tuning certain parameters such as assigned power for RB, cell-center user, cell-edge user and RB allocation.
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面向5G无线通信网络的3D MIMO-OFDMA垂直波束成形增强优化辅助干扰抑制
多输入多输出(MIMO)由于其独特的空间多路复用能力和空间分集增益,在提高带宽效率和性能方面具有强大的能力,已成为近期无线应用中众多值得关注的技术之一。为了在下一代网络中实现增强通信,将MIMO和正交频分多路系统相结合,促进了基于时频的资源块(RBs)空间复用。本文旨在提出一种使蜂窝边缘用户和蜂窝中心用户的吞吐量最大化的新方法。在本工作中,将指定的多目标函数定义为单目标函数,并引入一种新的改进算法对其进行求解。这个优化问题可以通过微调某些参数来解决,例如为RB分配的功率、小区中心用户、小区边缘用户和RB分配。参数的微调是通过一种新的改进的Lion算法(LA)来实现的,称为Lion with new cub generation (LA- ncg)模型。最后,从信噪比、吞吐量等方面验证了该方法对现有模型的改进。结果表明,采用的LA- ncg模型比现有的联合加工协调多点对偶分解法(JC-DDM)、分数规划法(FP)和LA模型分别高出66.67%、66.67%和20%。此外,传统JC-DDM、FP和LA模型在第100次迭代时的吞吐量分别为10、45和35。然而,提出的LA-NCG方案实现了更高的吞吐量58。与现有的JC-DDM、FP和LA模型相比,所采用方案对8BS的吞吐量分别提高59.68%、44.19%和9.68%。因此,从获得的结果来看,所采用的LA-NCG模型的增强效果得到了有效的验证。独创性/价值本文采用最新的优化算法LA-NCG,建立了一种使蜂窝边缘用户和蜂窝中心用户的吞吐量最大化的新方法。这是第一次使用基于la - ngc的优化,该优化有助于微调某些参数,例如为RB、蜂窝中心用户、蜂窝边缘用户和RB分配功率。
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