无缝融合雷达测距与成像、无线通信和频谱传感技术,实现由微波光子技术助力的 6G

Taixia Shi, Yang Chen, Jianping Yao
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引用次数: 0

摘要

为了促进人、机、物之间的智能互联,下一代通信技术除了高速无线通信外,还必须集成各种传感功能。目前正在研究如何将雷达、无线通信和频谱传感集成到 6G 技术中,以提高频谱效率、增强系统集成和降低成本。微波光子学是一种将微波工程和光子技术相结合的技术,被认为是实现集成和突破电子解决方案瓶颈问题的有效解决方案。在这里,我们展示了一种光子辅助联合雷达、无线通信和频谱传感系统,该系统可在保持高速通信的同时精确感知周围的物理和电磁环境。通信信号和扫频信号通过共享系统架构和硬件进行光学合并,以实现信号电平共享,最终同时实现高精度雷达测距和成像(测量误差在± 4 厘米以内,成像分辨率为 25 × 24.7 毫米)、2 Gbaud 的高数据速率无线通信以及宽带频谱传感(在 6 GHz 带宽内频率测量误差在±10 MHz 内)。施泰夏及其同事展示了一种微波光子系统,该系统集成了雷达、通信和频谱传感功能,适用于 6G 技术,可同时实现高精度雷达测距和成像、高数据速率无线通信以及宽带频谱传感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Seamlessly merging radar ranging and imaging, wireless communications, and spectrum sensing for 6G empowered by microwave photonics

Seamlessly merging radar ranging and imaging, wireless communications, and spectrum sensing for 6G empowered by microwave photonics
To facilitate intelligent interconnection among people, machines, and things, the next generation of communication technology must incorporate various sensing functions besides high-speed wireless communications. Integration of radar, wireless communications, and spectrum sensing is being investigated for 6G with increased spectral efficiency, enhanced system integration, and reduced cost. Microwave photonics, a technique that combines microwave engineering and photonic technology is considered an effective solution for implementing the integration and breaking the bottleneck problems of electronic solutions. Here, we show a photonics-assisted joint radar, wireless communications, and spectrum sensing system that enables precise perception of the surrounding physical and electromagnetic environments while maintaining high-speed communication. Communication signals and frequency-sweep signals are merged optically using a shared system architecture and hardware to achieve signal level sharing, ultimately simultaneously achieving high-accuracy radar ranging and imaging with a measurement error within ± 4 cm and an imaging resolution of 25 × 24.7 mm, high-data-rate wireless communications at 2 Gbaud, and wideband spectrum sensing with a frequency measurement error within ±10 MHz in a 6 GHz bandwidth. Taixia Shi and colleagues demonstrate a microwave photonics system with integrated capabilities of radar, communication, and spectrum sensing for 6G technologies, simultaneously achieving high-accuracy radar ranging and imaging, high-data-rate wireless communications, and wideband spectrum sensing.
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