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首页> 外文期刊>IET microwaves, antennas & propagation >ANN-based design of a versatile millimetrewave slotted patch multi-antenna configuration for 5G scenarios
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ANN-based design of a versatile millimetrewave slotted patch multi-antenna configuration for 5G scenarios

机译:基于ANN的多功能毫米波开槽贴片多天线配置设计,适用于5G场景

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摘要

This study addresses the modelling of a dual band (28 and 38 GHz), circularly polarised slotted-patch-antenna for highly demanded millimetre wave multi-input multi-output (MIMO)-systems in fifth generation (5G) networks. A computer-aideddesign model is derived by means of an artificial neural network (ANN) which allows obtaining the physical dimensions of a single-fed antenna, satisfying both near-and far-field goals, without resorting to time-consuming electromagnetic simulation. This mathematical model can be implemented in any CAD-tool, as demonstrated within the framework of advanced design system. This allows, for the first time, to carry out optimisations of strategic importance for future 5G non-linear-radiatingsystems, especially operating at millimetre wave, directly addressing their far-field behaviour. The model performance is validated by some examples and measurement results. A further important advantage of this approach is that the trained ANNmodel can be further adopted to fast, but accurately, investigate the complex relationships between antenna layout and its nearfield and far-field performance, such as the resonance conditions and the polarisation behaviour. Indeed arbitrary orthogonalpolarisations (LHCP/RHCP) have been achieved by the aid of the ANN-model of the same topology. This result can be adopted to implement a combination of two independent radiation patterns for the antenna pair: this feature is attractive for MIMO applications. This is confirmed by measurements showing antenna-coupling reduction with the MIMO-array exploiting polarisation diversity.
机译:本研究涉及第五代 (5G) 网络中高要求毫米波多输入多输出 (MIMO) 系统的双频(28 和 38 GHz)圆极化开槽贴片天线建模。计算机辅助设计模型是通过人工神经网络 (ANN) 推导出来的,该模型允许获得单馈电天线的物理尺寸,同时满足近场和远场目标,而无需诉诸耗时的电磁仿真。这个数学模型可以在任何CAD工具中实现,正如在高级设计系统的框架内所展示的那样。这首次允许对未来的5G非线性辐射系统进行具有战略重要性的优化,特别是在毫米波下运行,直接解决其远场行为。通过一些算例和测量结果验证了模型的性能。这种方法的另一个重要优点是,可以进一步采用经过训练的ANN模型来快速但准确地研究天线布局与其近场和远场性能之间的复杂关系,例如谐振条件和极化行为。事实上,任意正交极化(LHCP/RHCP)已经通过同一拓扑的ANN模型实现。这一结果可用于为天线对实现两种独立辐射方向图的组合:此特性对MIMO应用很有吸引力。测量结果证实了这一点,该测量结果显示,利用极化分集的MIMO阵列减少了天线耦合。

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