用于高吞吐量通信系统的双向双端口四模宽带带内全双工高孔径效率发射-反射阵列天线

IF 5.8 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Qiming Wang;Cheng Pang;Pengcheng Wang;Ari Sihvola;Jiaran Qi
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引用次数: 0

摘要

本文提出了双向双端口四模i波段全双工(IBFD)发射-反射阵列(TRA)天线的工作机理和物理验证。这是第一个具有双向辐射能力的IBFD阵列,也是第一个具有IBFD功能的TRA,通过单一辐射阵列实现了IBFD和TRA的优势。所提出的双向IBFD TRA理论上可以使IBFD通信系统的吞吐量提高一倍,频谱复用效率提高四倍。IBFD TRA由一个双向全双工阵列和位于阵列两侧的两个馈电喇叭组成。一个角连接Tx链,另一个连接Rx链。阵列单元由双向全双工四模拓扑结构构成,该拓扑结构具有正向和反向两个正交模式。采用正交模式在两个方向上分别建立Tx和Rx通道,大大降低了自干扰。因此,可以在单元级完成两个方向的同时收发和Tx/Rx自干扰消除,避免了Tx和Rx的交错,并通过将所提出的双向单元布置成阵列最终实现较高的孔径效率。为了获得该单元的双向散射特性,提出了一种基于等效网络辅助琼斯矩阵推导的半解析方法。此外,为了快速确定三个相位调制变量的分布,提出了一种双向相位计算方法。最后,本文提出的IBFD TRA在ku波段进行了实验验证,实现了双向覆盖、同时发送和接收、宽工作带宽和高孔径效率等高指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bidirectional Dual-Port Quad-Mode Wideband In-Band Full-Duplex Transmit-Reflect-Array Antenna With High Aperture Efficiency for High-Throughput Communication Systems
The operation mechanism and physical verification of the bidirectional dual-port quad-mode I-band full-duplex (IBFD) transmit-reflect-array (TRA) antenna are proposed in this article. This is the first IBFD array with bidirectional radiation capability and also the first TRA with IBFD functionality which actualizes the advantages of both the IBFD and TRA by a single radiation array. The proposed bidirectional IBFD TRA can theoretically double the throughput and quadruple the spectral reuse efficiency of the IBFD communication system equipped with it. The IBFD TRA is built by a bidirectional full-duplex array and two feeding horns positioned on both sides of the array. One horn connects the Tx chain and the other connects the Rx chain. The unit of the array is constructed by a bidirectional full-duplex quad-mode topology structure which has two orthogonal modes in both forward and backward directions. The orthogonal modes are used to build Tx and Rx channels in both directions which can greatly reduce the self-interference. Therefore, the simultaneous transmit and receive and Tx/Rx self-interference cancellation in both directions can be completed at the element level, avoiding interleave of the Tx and Rx, and a high aperture efficiency can be eventually achieved by arranging the proposed bidirectional unit into an array. To obtain the bidirectional scattering properties of the proposed unit, a semianalytical method is proposed based on equivalent-network-assisted Jones matric derivations. Furthermore, a bidirectional phase calculation procedure is proposed for quickly ascertaining the distributions of three phase-modulating variables. Finally, the proposed IBFD TRA is experimentally verified at Ku-band, realizing high figures of metrics, for example, bidirectional coverage, simultaneous transmit and receive, wide operating bandwidth, and high aperture efficiency.
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来源期刊
CiteScore
10.40
自引率
28.10%
发文量
968
审稿时长
4.7 months
期刊介绍: IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applications pertaining to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques
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