面向频谱认知的RFSoC宽带接收平台:设计、实现与射频性能验证
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作者单位:

1中国科学院国家空间科学中心复杂航天系统电子信息技术重点实验室,北京101499;2中国科学院大学计算机科学与技术学院,北京 100049

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基金项目:

国家重大项目(GJ110500)。


An RFSoC-Based Wideband Receiving Platform for Spectrum Sensing: Design, Implementation, and RF Performance Verification
Author:
Affiliation:

1Key Laboratory of Electronics and Information Technology for Complex Aerospace Systems, National Space Science Center,Chinese Academy of Science,Beijing 101499,China;2School of Computer Science and Technology, University of Chinese Academy of Sciences,Beijing 100049,China

Fund Project:

National Major Project (No.GJ110500).

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    摘要:

    电磁频谱是现代信息体系的核心战略资源,而高性能宽带射频接收平台作为频谱认知的物理层基础,其前端硬件性能直接制约感知与认知算法的性能上限。本文基于射频片上系统技术,设计并实现了一种面向频谱认知应用的高集成度软件无线电平台,在150 mm×100 mm单板上集成了Gsps级高速AD/DA转换器、FPGA可编程逻辑、多核ARM处理器、DDR4大容量存储器及多样化高速外设接口。采用信号源直连方式对平台射频接收性能进行了系统性实测与分析,测试指标类别涵盖基本接收参数、ADC核心性能及动态范围与灵敏度等关键维度。实测结果表明,该平台可接收频率最高达4 GHz,在DC~2.025 GHz第一奈奎斯特区内,有效位数保持在7.97~8.32 bit,噪声谱密度优于-151 dBFS/Hz,系统动态范围超过71 dB,在高集成度、宽瞬时带宽与多样化高速接口等方面展现出综合优势,可为频谱认知智能提供有效的硬件支撑。

    Abstract:

    The electromagnetic spectrum is a core strategic resource of modern information systems. As the physical-layer foundation of spectrum cognition, a high-performance wideband RF receiving platform directly bounds the performance ceiling of subsequent sensing and cognition algorithms through its front-end hardware performance. This paper presents a highly integrated software-defined radio platform for spectrum cognition applications based on radio frequency system-on-chip (RFSoC) technology, integrating Gsps-class high-speed AD/DA converters, FPGA programmable logic, multi-core ARM processors, DDR4 high-capacity memory, and diversified high-speed peripheral interfaces onto a single 150 mm×100 mm board. A systematic RF receiving performance evaluation is conducted via a direct signal-source connection method, covering key dimensions including basic receiving parameters, ADC core dynamic performance, and dynamic range with sensitivity. Experimental results demonstrate that the platform supports a maximum receiving frequency of 4 GHz, maintains an effective number of bits (ENOB) of 7.97—8.32 bits, achieves a noise spectral density better than -151 dBFS/Hz, and delivers a system dynamic range exceeding 71 dB. With its comprehensive advantages in high integration density, wide instantaneous bandwidth, and diversified high-speed interfaces, the platform offers an effective hardware foundation for spectrum cognition intelligence.

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引用本文

徐建祥,胡继英朔,周莉,朱岩,黄永辉,王晋阳.面向频谱认知的RFSoC宽带接收平台:设计、实现与射频性能验证[J].数据采集与处理,2026,(3):710-724

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  • 收稿日期:2026-03-15
  • 最后修改日期:2026-05-09
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  • 在线发布日期: 2026-06-10