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用于 - 频段电子波束转向的紧凑型简约型中间相移馈电网络设计。 需注意,原文中“-Band”处有缺失信息,以上译文根据现有内容进行了翻译。

Design of a Compact and Minimalistic Intermediate Phase Shifting Feed Network for -Band Electrical Beam Steering.

作者信息

Verho Sebastian, Chung Jae-Young

机构信息

Department of Electrical and Information Engineering, Seoul National University of Science and Technology, Seoul 01811, Republic of Korea.

出版信息

Sensors (Basel). 2024 Feb 15;24(4):1235. doi: 10.3390/s24041235.

Abstract

Intermediate phase shifting is a footprint- and cost-reduction technique for reconfigurable feed networks. These feed networks are utilized in antenna arrays to perform electrical beam steering. In intermediate phase shifting, a phase shifter is shared between two adjacent antennas. Conventionally, antennas only have individual phase shifters. With shared phase shifters, we reduce the number of components and the footprint by 25%. Consequently, this decreases the price and enables designs at millimeter-wave frequencies where space is limited due to frequency-dependent antenna spacing. This intermediate phase shifting is demonstrated by designing a reconfigurable feed network for the -band that generates a continuous phase shift profile for beam steering. Due to the use of varactors and a novel biasing method, it does not require expensive beamformer integrated chips or lumped components for biasing. The feed network is combined with a 4 × 4 antenna array to demonstrate its beam-steering capabilities. The result is a high-density and minimalistic design that fits in a small volume of 25.6 × 25.6 × 0.95 mm. With this small antenna array, the main beam is steered at ±40∘ broadside, providing full 1D and restricted 2D steering. It is a potential candidate for wireless sensor and mobile networks.

摘要

中间相移是一种用于可重构馈电网络的减少占用面积和成本的技术。这些馈电网络用于天线阵列中以执行电波束控制。在中间相移中,一个移相器在两个相邻天线之间共享。传统上,天线只有单独的移相器。通过共享移相器,我们将组件数量和占用面积减少了25%。因此,这降低了成本,并能够在毫米波频率下进行设计,在该频率下由于与频率相关的天线间距,空间受到限制。通过为-波段设计一个可重构馈电网络来演示这种中间相移,该网络为波束控制生成连续的相移分布。由于使用了变容二极管和一种新颖的偏置方法,它不需要昂贵的波束形成器集成芯片或用于偏置的集总元件。该馈电网络与一个4×4天线阵列相结合,以展示其波束控制能力。结果是一个高密度且简约的设计,其体积小至25.6×25.6×0.95毫米。使用这个小天线阵列,主波束在±40°宽边方向上进行控制,提供完整的一维和受限的二维控制。它是无线传感器和移动网络的一个潜在候选方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6c0/10892646/f8400880f38a/sensors-24-01235-g001.jpg

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