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A computationally efficient node-selection scheme for cooperative beamforming in Cognitive Radio enabled 5G systems

机译:一种计算上有效的高效节点选择方案,用于Cognive无线电中的合作波束形成为5G系统

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Cooperative transmit beamforming (CTB) is a practical approach for addressing the challenging problem of spectrum scarcity in broadband 5G wireless communication systems. It is a technique that allows a group of secondary users (SUs), each equipped with a single omni-directional antenna, to collaborate and steer the signal towards the intended receiver. CTB allows SUs to co-exist with primary users in the same spectrum, which helps to significantly improve the efficiency of spectrum utilization. One of the key factors that affect the performance of CTB is the selection of participatory nodes. In this paper, we first formulate the CTB as an optimization problem, and then investigate the impact of different node-selection schemes on the performance of CTB. Our findings illustrate that exhaustive search based optimal node-selection scheme is computationally infeasible for real-time systems, while simple random-selection and highest-channel-state based selection often result in poor performance. Motivated by these findings, we propose a computationally efficient node-selection scheme for CTB that achieves a near-optimal performance. The proposed scheme is based on iterative node-replacement and is computationally scalable to large system size. Results from extensive simulations show that the proposed scheme asymptotically approaches the exhaustive search based optimal system performance. In our example, the performance of the proposed scheme is approximately 98.5% of the optimal system performance while limiting the required computations to only 1.67%.
机译:协同传输波束成形(CTB)是解决宽带5G无线通信系统中频谱稀缺问题的实用方法。它是一种技术,允许一组辅助用户(SUS),每个辅助用户(SUS),每个都配备有单个全向天线,用于协作并转向预期接收器的信号。 CTB允许在同一频谱中用主要用户共存,有助于显着提高频谱利用效率。影响CTB性能的关键因素之一是参与性节点的选择。在本文中,我们首先将CTB称为优化问题,然后调查不同节点选择方案对CTB性能的影响。我们的研究结果说明了基于穷的搜索最优节点选择方案用于实时系统,而实时系统则可不可行,而简单的随机选择和基于最高通道状态的选择通常会导致性能不佳。通过这些调查结果,我们提出了一种用于CTB的计算上有效的节点选择方案,实现了近乎最佳性能。所提出的方案基于迭代节点替换,并计算到大系统大小。广泛的模拟结果表明,该方案渐近地接近基于穷举的搜索最优系统性能。在我们的示例中,所提出的方案的性能约为最佳系统性能的98.5%,同时将所需计算限制为仅1.67%。

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