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High-efficiency scheme and optimisation technique for design of fragment-type isolation structure between multiple-input and multiple-output antennas

机译:多输入多输出天线之间的分段式隔离结构设计的高效方案和优化技术

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摘要

Fragment-type structure has found its application in designing high isolation structure for multiple-input and multiple-output (MIMO) system. In this study, a novel design scheme and a high-efficiency optimisation searching technique for fragment-type isolation structure are proposed based on multiobjective evolutionary algorithm based on decomposition combined with enhanced genetic operators (MOEA/D-GO). Both considering non-uniform fragment cells in design space and combining two-dimensional median filtering operator in the original MOEA/D-GO can improve speed of optimisation searching while obtaining higher isolation and better envelope correlation coefficient at expense of capacity loss. With the high-efficiency optimisation search, more design objectives including the beam direction can be handled as well. The proposed design scheme and high-efficiency searching technique are demonstrated through design examples with two MIMO planar inverted-F antennas operating at 2.345–2.36 GHz and having a centre-to-centre interval of 15 mm. Comparison results among three designs verify the high effectiveness of the proposed scheme and optimisation searching technique.
机译:片段类型结构已经在设计用于多输入多输出(MIMO)系统的高隔离结构中得到了应用。本研究提出了一种基于分解与增强遗传算子(MOEA / D-GO)相结合的多目标进化算法的碎片类型隔离结构设计方案和高效优化搜索技术。在设计空间中考虑非均匀碎片单元以及在原始MOEA / D-GO中组合二维中值滤波算子都可以提高优化搜索的速度,同时获得更高的隔离度和更好的包络相关系数,但以容量损失为代价。通过高效的优化搜索,还可以处理更多设计目标,包括光束方向。通过两个工作在2.345–2.36 GHz且中心距为15 mm的MIMO平面倒F天线的设计实例,论证了所提出的设计方案和高效搜索技术。三种设计的比较结果验证了所提方案和优化搜索技术的有效性。

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