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Proof of the density tapering concept of an unequally spaced array by electric field distributions of electromagnetic simulations

机译:通过电磁模拟电场分布通过电磁模拟的密度逐渐变细概念证明

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The design method of an unequally spaced array was based on the density tapering in the textbook "Antenna theory" in 1969. The effects on grating lobe reductions were shown by radiation pattern calculations. However, no proof for the achievement of density tapering was shown. In this paper, through direct comparisons of the objective amplitude distribution with electric field distributions by electromagnetic simulation, density tapering is examined. A log-periodic dipole antenna operating from 900MHz to 2500MHz is designed for the array element. The unequally spaced 31-element array antenna is used for calculation. At many kinds of density tapering and many frequencies, calculated electric field distributions in a near-field region of the array antenna agree with the given density tapering distributions. The paper results show that the density tapering is achieved from 900MHz to 2000MHz and the effects of grating lobe reductions are ensured from 900MHz to 2500MHz..
机译:不平等间隔阵列的设计方法基于1969年教科书“天线理论”中的密度逐渐变细。通过辐射模式计算显示了对光栅叶片减少的影响。 然而,显示了没有实现密度逐渐变细的证据。 本文通过电磁仿真与电磁场分布的目标幅度分布的直接比较,检查密度逐渐变细。 操作从900MHz到2500MHz的日志定期偶极天线用于阵列元件。 不均等间隔的31元件阵列天线用于计算。 在许多类型的密度逐渐变细和许多频率下,阵列天线的近场区域中的计算电场分布与给定的密度逐渐变细分布同意。 纸质结果表明,900MHz至2000MHz的密度逐渐变细,从900MHz到2500MHz中确保光栅叶片减少的影响..

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