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Multi-port Slot Array Antenna for Millimeter-wave Direction Finding and Beam-forming Applications

机译:多端口缝隙阵列天线,用于毫米波测向和波束成形应用

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摘要

A simple multi-port antenna structure is proposed which can be used for direction finding (DF) and beam-forming applications in the receive and transmit modes, respectively. The proposed antenna offers unique functionalities in both receive and transmit modes. For DF applications in the receive mode, the beam-scanning laws of each antenna array is engineered to cover a given sector of space and the back-end of the system will feature a power sensing mechanism to monitor the power received at all ports. In the transmit mode, the proposed antenna can be used for beam-forming applications by engineering the individual port excitation and the antenna sub-arrays. The proposed antenna structure characteristics are demonstrated using full-wave simulations at 58-61 GHz based on circularly polarized slot arrays using substrate integrated waveguide (SIW) technology. Initial results show the antenna features high angle of arrival (AoA) resolution and a wide sector coverage, making it a good candidate for 5G wireless systems.
机译:提出了一种简单的多端口天线结构,该结构可分别用于接收和发射模式下的测向(DF)和波束成形应用。所提出的天线在接收和发射模式下均提供独特的功能。对于接收模式下的DF应用,每个天线阵列的波束扫描法则都经过设计以覆盖给定的空间范围,并且系统的后端将具有功率检测机制,以监视在所有端口接收的功率。在发射模式下,通过对单个端口激励和天线子阵列进行工程设计,可以将所建议的天线用于波束成形应用。拟议的天线结构特性在58-61 GHz的全波仿真基础上进行了演示,该仿真基于使用衬底集成波导(SIW)技术的圆极化缝隙阵列。初步结果表明,该天线具有高到达角(AoA)分辨率和广泛的扇区覆盖范围,使其成为5G无线系统的理想选择。

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