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Mean Effective Gain of Compact WLAN Genetic Printed Dipole Antennas in Indoor-Outdoor Scenarios

机译:室内外场景中紧凑型WLAN遗传印刷偶极子天线的平均有效增益

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Two dual-printed dipole antennas for WLAN applications operating in the 802.11 a/b/g (2.4-2.5 Ghz and 4.9-5.875 GHz) frequency bands are presented. Genetic Algorithm optimization (GA) is applied first, to a classical dual band printed dipole antenna schema. Later on, a pre-fractal technique is proposed on the larger strip and electromagnetic parameters are re-optimized to achieve a more compact radiator. Frequency performance of both antennas is introduced showing a VSWR< 1.5 for a input impedance of 50 Ohms. Finally, the mean effective gain (MEG) is worked out considering several scenarios. Results for both antennas for typical indoor and outdoor environments are given using the statistical angle of arrival behavior of such environments.
机译:提出了用于802.11 a / b / g(2.4-2.5 GHz和4.9-5.875 GHz)频段的WLAN应用的两个双打印偶极子天线。首先将遗传算法优化(GA)应用于经典的双频段印刷偶极天线方案。后来,在较大的带钢上提出了一种预分形技术,并重新优化了电磁参数以实现更紧凑的散热器。引入了两个天线的频率性能,对于50欧姆的输入阻抗显示VSWR <1.5。最后,考虑了几种情况,得出了平均有效增益(MEG)。使用此类环境的到达行为统计角度,给出了典型的室内和室外环境的天线结果。

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