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Fundamental Properties and Optimization of Broadside Radiation From Uniform Leaky-Wave Antennas

机译:均匀泄漏波天线的基本特性和宽边辐射的优化

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In this paper, radiation at broadside is studied for a general class of leaky-wave antennas (LWAs) comprised of a grounded slab covered with a partially reflecting surface, on the basis of a simple transverse equivalent network model of the structure. The analysis of the one-dimensional (1-D) version of such a LWA excited by a line source shows that a central role in establishing the features of broadside radiation is played by the condition that the phase and attenuation constants of the leaky mode responsible for radiation are equal. When this happens, a beam with a single peak at broadside is on the verge of splitting into two distinct peaks, and maximum power density is radiated at broadside. Design formulas to achieve such an optimized condition, as well as approximate expressions for the frequency bandwidth and pattern beamwidth of the antenna and for the leaky-wave phase and attenuation constants are derived, both in the absence and in the presence of losses; in addition, an optimal-beamwidth condition (which gives the narrowest broadside beam) is derived. Finally, all the results are extended to the practical case of a 2-D LWA excited by a horizontal dipole.
机译:在本文中,基于结构的简单横向等效网络模型,研究了一般类漏波天线(LWA)的宽边辐射,该漏水天线由覆盖有部分反射面的接地平板组成。通过线源激发的这种LWA的一维(1-D)版本分析表明,在建立宽边辐射特征的过程中,由泄漏模的相位和衰减常数引起的条件起着中心作用。对于辐射是相等的。发生这种情况时,在宽边具有单个峰的光束即将分裂为两个不同的峰,并且在宽边辐射了最大功率密度。在没有损耗和有损耗的情况下,得出实现这种优化条件的设计公式,以及天线的频率带宽和方向图波束宽度以及漏波相位和衰减常数的近似表达式;另外,推导了最佳光束宽度条件(给出了最窄的宽边光束)。最后,所有结果都扩展到由水平偶极子激发的二维LWA的实际情况。

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