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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >A binomially distributed photonic bandgap structure (PBGS) and its application to bandpass filter
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A binomially distributed photonic bandgap structure (PBGS) and its application to bandpass filter

机译:二项分布光子带隙结构(PBGS)及其在带通滤波器中的应用

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摘要

Conventional hole-patterned photonic bandgap structures (PBGSs) yield distinct and wide stopband, but suffer from a significant ripples in the passband beyond the optimized filling factor (FF) of 0.25. Binomial distribution in PBGSs can yield improved performance beyond this value. The optimum FF of binomially distributed PBGSs has been ivestigated at multifrequencies in the X-band, namely, at 9, 10.5, and 12 GHz. It can be seen that 0.4 may be considered as the optimum FF for binomially distributed PBGSs at different frequencies within X-band operations. Finally, binomially PBGSs with this optimium FF are applied in a bandpass filter (BPF) for suppresing the intrinsic spurious harmonies of a BPF. The various experimental investigations reveal that the variation in number of PBG elements and their locations affect the performance of harmonic suppression. Binomially distributed PBGSs are found to be potential candidate to suppress the harmonic signal and to improve the return- and insertion-loss bandwidths. (C) 2006 Wiley Periodicals, Inc.
机译:常规的孔型光子带隙结构(PBGS)产生截然不同且宽的阻带,但通带中出现明显的波动,超出了0.25的最佳填充因子(FF)。 PBGS中的二项式分布可以提高性能,超过该值。二项分布的PBGS的最佳FF已在X频段(即9、10.5和12 GHz)的多频率下提出。可以看出,对于X波段操作中不同频率的二项分布的PBGS,可以将0.4视为最佳FF。最后,将具有最佳FF的二项式PBGS应用于带通滤波器(BPF)中,以假定BPF固有的杂散谐波。各种实验研究表明,PBG元件数量及其位置的变化会影响谐波抑制的性能。发现二项分布的PBGS是抑制谐波信号并改善回波损耗和插入损耗带宽的潜在候选者。 (C)2006年Wiley Periodicals,Inc.

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