A 256-Element Phased-Array Relay Transceiver for 5G Network Using 24-GHz Wireless Power Transfer With Discrete ICs

0 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE microwave and wireless technology letters Pub Date : 2024-03-10 DOI:10.1109/LMWT.2024.3395300
Michihiro Ide;Keito Yuasa;Sena Kato;Takashi Tomura;Kenichi Okada;Atsushi Shirane
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Abstract

This letter introduces a 256-array wirelessly powered phased-array transceiver with 24-GHz wireless power transfer (WPT) for 28-GHz millimeter-wave 5G communication. The 256-element rectifier arrays are configured with discrete ICs, including GaAs diodes, baluns, DPDT switches, and digital ICs. The rectifier can convert a 24-GHz WPT signal to dc while providing the frequency conversion between 28- and 4-GHz IF signal by using a 24-GHz WPT as an LO signal. The phases of 4-GHz IF signals are changed by the 180° phase shifters, configured with two baluns and a DPDT switch, resulting in Tx and Rx beamforming. According to the over-the-air (OTA) measurement with the 256-array prototype module, it can achieve 54% of PCE with 10-dBm input power and −19-dB conversion gain for Tx mode. The error vector magnitude (EVM) is also measured with the orthogonal frequency-division multiple access (OFDMA)-mode modulated signal, compliant with 5G new radio (NR), and the proposed transceiver can transmit and receive a 64 QAM modulated signal with 400-MHz bandwidth with 28-GHz beamforming.
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使用分立集成电路的 256 元相控阵 5G 网络中继收发器,采用 24 GHz 无线电源传输技术
这封信介绍了一种 256 阵列无线供电相控阵收发器,具有 24-GHz 无线功率传输 (WPT),适用于 28-GHz 毫米波 5G 通信。256 元整流器阵列配置了分立集成电路,包括砷化镓二极管、平衡器、DPDT 开关和数字集成电路。整流器可将 24-GHz WPT 信号转换为直流,同时通过使用 24-GHz WPT 作为 LO 信号,提供 28-GHz 和 4-GHz IF 信号之间的频率转换。4-GHz IF 信号的相位由 180° 移相器改变,移相器配置有两个平衡器和一个 DPDT 开关,从而实现 Tx 和 Rx 波束成形。根据对 256 阵列原型模块进行的空中(OTA)测量,在 10 dBm 输入功率和 -19 dB 转换增益的 Tx 模式下,它可以实现 54% 的 PCE。此外,还测量了符合 5G 新无线电(NR)的正交频分多址(OFDMA)模式调制信号的误差矢量幅度(EVM)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Table of Contents IEEE Microwave and Wireless Technology Letters Information for Authors IEEE Microwave and Wireless Technology Letters publication Table of Contents IEEE Open Access Publishing
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