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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Horn and lens antenna array with chevron‐shaped prism for 77‐GHz automotive radar with dual‐range sensing and a dual field of view
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Horn and lens antenna array with chevron‐shaped prism for 77‐GHz automotive radar with dual‐range sensing and a dual field of view

机译:带有雪佛龙形的棱镜的喇叭和镜头天线阵列,用于77 -GHz汽车雷达,带双距离感应和双重视野

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摘要

A transmitter antenna array composed of two horn and lens antennas sharing a novel chevron‐shaped prism and one horn and lens antenna without such a prism has been investigated for 77‐GHz‐band automotive radar with dual‐range sensing and a dual field‐of‐view (FOV). The horn and lens antenna without the prism is directed at boresight to produce a radiation pattern with a narrow FOV for long‐range detection. The portions of the prism output surface corresponding to the two antennas that share the prism are angled in opposite directions to tilt their radiation patterns to the left and right and thereby provide a wide FOV in azimuth for middle‐range detection. The prism created a smooth radiation pattern in the major lobe when the tilt angle was large enough to achieve an azimuth FOV of more than ±35°. A fabricated transmitter antenna array achieved a gain of 21.5 dBi and a half‐power beam width of 22° at boresight for long‐range detection and one of more than 15.5 dBi within azimuth angles of ±35° for middle‐range detection at 76.5 GHz. This antenna array for long‐ and middle‐range detection had reflection coefficients (S11) of less than −14 and −17 dB, respectively, from 76 to 77 GHz. The antenna array thus produces the beams required for dual‐range dual‐FOV radar. © 2019 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:由两个角和镜头天线组成的发射机天线阵列共享一个新颖的雪佛龙形棱镜,并且已经研究了一个没有这样的棱镜的角和镜头天线77 -GHz -band汽车雷达带有双范围传感和双视场(FOV)。没有棱镜的喇叭和镜头天线针对钻孔,以产生带有狭窄FOV的辐射模式,用于远程检测。棱镜输出表面的一部分与共享棱镜的两个天线相对应的部分朝相反的方向倾斜,以将其辐射模式向左和右侧倾斜,从而在方位角提供了宽的FOV,以进行中距离检测。当倾斜角足够大以达到超过±35°的方位角时,棱镜在主要叶中产生了平滑的辐射模式。制成的发射机天线阵列可在孔径上获得21.5 dbi的增益,而在孔径为22°的半宽度宽度为22°,用于长期检测,而在76.5 GHz的中量中,方位角±35°的方位角之一占据了15.5 dbi之一。 。该天线阵列的长期和中段检测的反射系数(S11)分别小于-14和-17 dB,从76到77 GHz。因此,天线阵列会产生双距离双FOV雷达所需的光束。 ©2019日本电气工程师研究所。由John Wiley&amp出版Sons,Inc。

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