A D-Band Concurrent 20-Beam MIMO Transmitter Array With a Four-Element Joint Static/Dynamic Beam-Multiplication Beamformer

IF 5.6 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Journal of Solid-state Circuits Pub Date : 2024-11-11 DOI:10.1109/JSSC.2024.3487619
Kyung-Sik Choi;Basem Abdelaziz Abdelmagid;Yuqi Liu;Hua Wang
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Abstract

This work presents a D-band multi-input multi-output (MIMO) transmitter (TX) array with a four-element joint static/dynamic beamformer. The proposed beamformer combines a static beamformer and a space-time modulated dynamic array to produce a large number of concurrent beams with fewer array elements and multiple independent data streams, essentially achieving RF-domain beam number multiplication. Consequently, the beamforming system only requires low-overhead RF/analog chains and simple digital computation, making it conducive to low-cost applications. More importantly, the concurrent multiple beams are formed at distinct carrier frequencies at various spatial angles. This allows easy discrimination of adjacent beams, which is essential for MIMO communication for high link throughput as well as MIMO radar operations for rapid situational awareness sensing of surroundings and one-shot localization. Traditional N-element analog beamforming arrays require an M set of independent beamformers to generate M independent beams. The proposed N-element beamformers can generate up to $M\times (N+1)$ concurrent beams by cascading M-beam beamformers with $N+1$ time-modulated array (TMA) operation, which offers a new operation freedom to trade off among number of concurrent beams, array gain, spectral efficiency, and beam angle dependency. As a proof of concept, a D-band 125-GHz four-element TX array is implemented in a GlobalFoundaries 22-nm CMOS FD-SOI process with a flip-chip package. With the beam-multiplication effect, the four-element TX array radiates a total of concurrent 20 beams with a unique space-to-frequency mapping over ±60° total beam field-of-view (FoV). Through over-the-air measurement, the TX array demonstrates concurrent four beams with 4-Gb/s 16-QAM modulation and reconfigurable space-to-frequency mapped 20 beams, each with 100-MHz bandwidth frequency-modulated continuous-wave (FMCW) chirping to support joint MIMO communication and sensing.
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带有四元素联合静态/动态波束倍增波束形成器的 D$ 波段并发 20 波束 MIMO 发射机阵列
本文提出了一种d波段多输入多输出(MIMO)发射机(TX)阵列,该阵列具有四元联合静态/动态波束形成器。该波束形成器将静态波束形成器与时空调制动态阵列相结合,以较少的阵元和多个独立的数据流产生大量并发波束,本质上实现了射频域波束数倍增。因此,波束形成系统只需要低开销的射频/模拟链和简单的数字计算,有利于低成本应用。更重要的是,在不同的空间角度上,在不同的载频上形成了并发的多波束。这使得相邻波束的识别变得容易,这对于MIMO通信的高链路吞吐量以及MIMO雷达操作的快速态势感知和一次性定位至关重要。传统的n元模拟波束形成阵列需要M组独立波束形成器来产生M个独立波束。本文所提出的N元波束形成器通过层叠M波束形成器与N+1时间调制阵列(TMA)操作,可以产生高达$M\次(N+1)$个并发波束,从而在并发波束数、阵列增益、频谱效率和波束角依赖性之间提供了新的操作自由度。作为概念验证,d波段125 ghz四元TX阵列在globalfoundries 22纳米CMOS FD-SOI工艺中实现,并采用倒装封装。在波束倍增效应下,四元TX阵列共辐射20束,具有独特的空间-频率映射,总波束视场(FoV)超过±60°。通过空中测量,TX阵列展示了并发4个波束,4gb /s 16-QAM调制和可重构空间到频率映射的20个波束,每个波束具有100 mhz带宽的调频连续波(FMCW)啁啾,以支持联合MIMO通信和传感。
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来源期刊
IEEE Journal of Solid-state Circuits
IEEE Journal of Solid-state Circuits 工程技术-工程:电子与电气
CiteScore
11.00
自引率
20.40%
发文量
351
审稿时长
3-6 weeks
期刊介绍: The IEEE Journal of Solid-State Circuits publishes papers each month in the broad area of solid-state circuits with particular emphasis on transistor-level design of integrated circuits. It also provides coverage of topics such as circuits modeling, technology, systems design, layout, and testing that relate directly to IC design. Integrated circuits and VLSI are of principal interest; material related to discrete circuit design is seldom published. Experimental verification is strongly encouraged.
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