Design of 77 GHz Narrow Beamwidth Antenna for UAVs Obstacle Avoidance Radar

Jing Song, Xu Sun, Shuang Wu
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引用次数: 1

Abstract

Obstacle avoidance technology is critical for Unmanned Aerial Vehicles (UAVs) in kinds of applications. Among several feasible obstacle avoidance technologies, millimeter-wave radar is promising with advantages of high precision, miniaturization, and works in all-day and all-climate. As a key part of the radar system, antenna is required to be operated with high gain, narrow beamwidth, low sidelobe level, and compact in size. In this paper, a 77 GHz millimeter-wave patch antenna array is designed to meet requirements proposed by UAVs obstacle avoidance radar. The designed antenna array is able to provide gain of 31.08 dB with narrow 3-dB beamwidth (8.97° in azimuth and 11.66° in elevation). Moreover, it effectively decreases sidelobe level to -24.5 dB relative to main lobe and uses less radiation elements than regular two-dimensional planar array, which leads to a compact size.
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用于无人机避障雷达的77 GHz窄波束天线设计
避障技术是无人机在各种应用中的关键技术。在几种可行的避障技术中,毫米波雷达具有高精度、小型化、全天候工作等优点,具有广阔的应用前景。天线作为雷达系统的重要组成部分,要求其具有高增益、窄波束宽度、低旁瓣电平和体积小等特点。本文针对无人机避障雷达的要求,设计了77 GHz毫米波贴片天线阵列。设计的天线阵列能够提供31.08 dB的增益,具有窄的3db波束宽度(方位角为8.97°,仰角为11.66°)。此外,它有效地将副瓣相对于主瓣的电平降低到-24.5 dB,并且比常规二维平面阵列使用更少的辐射元件,使其体积更小。
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