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Bandwidth optimization of a Planar Inverted-F Antenna using binary and real coded genetic algorithms
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作者 ameerudden mohammad riyad RUGHOOPUTH Harry C S 《重庆邮电大学学报(自然科学版)》 北大核心 2009年第2期276-283,共8页
With the exponential development of mobile communications and the miniaturization of radio frequency transceivers, the need for small and low profile antennas at mobile frequencies is constantly growing. Therefore, ne... With the exponential development of mobile communications and the miniaturization of radio frequency transceivers, the need for small and low profile antennas at mobile frequencies is constantly growing. Therefore, new antennas should be developed to provide larger bandwidth and at the same time small dimensions. Although the gain in bandwidth performances of an antenna are directly related to its dimensions in relation to the wavelength, the aim is to keep the overall size of the antenna constant and from there, find the geometry and structure that give the best performance. The design and bandwidth optimization of a Planar Inverted-F Antenna (PIFA) were introduced in order to achieve a larger bandwidth in the 2 GHz band, using two optimization techniques based upon genetic algorithms (GA), namely the Binary Coded GA (BCGA) and Real-Coded GA (RCGA). During the optimization process, the different PIFA models were evaluated using the finite-difference time domain (FDTD) method-a technique belonging to the general class of differential time domain numerical modeling methods. 展开更多
关键词 实数编码遗传算法 平面倒F天线 带宽优化 二进制编码 有限差分时域 数值模拟方法 天线性能 优化技术
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