优化的振动器散热器,具有有限尺寸的平面屏幕

N. Gorobets, N. Yeliseyeva
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引用次数: 0

摘要

在均匀几何衍射理论的框架内,求解了两个平行半波长振动子在无限薄方形完美导电屏上辐射的三维矢量衍射问题。计算结果表明,在它们之间的距离ξ=0.42÷0.55λ在高度h=0.25λ的正方形屏幕上放置振子,侧面尺寸L=1÷2 λ,可以在h和e观测平面上提供相同的图案主瓣宽度,2ΔθH=2ΔθE。在距离ξ=0.5λ处,当屏侧尺寸L=1.3λ,且条件ΔθH = ΔθE至场电平−25 dB时,到屏法向的最大功率增益为6.6。由于屏幕尺寸等于波长,因此辐射阻值与屏幕侧面尺寸无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized vibrator radiator with flat finite size screen
The three-dimensional vector diffraction problem of radiation of two parallel half-wave length vibrators on infinitely thin perfectly conducting screen with square form is solved within the frame of the uniform geometric theory of diffraction method. The results of calculation have shown that at placement of the vibrators at distance between them ξ=0.42÷0.55λ at height h=0.25λ above the square screen with the side size L=1÷2 λ it is possible to provide identical width of the main lobe of patterns in the H-and E-observation planes, 2ΔθH=2ΔθE. At distance ξ=0.5λ, the maximum power gain in the normal direction to the screen equals 6.6, when the screen side size L=1.3λ, and the condition ΔθH = ΔθE is carried out to the field level −25 dB. The radiation resistance values do not depend on the screen side size since the size screen equals to wave length.
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