| 摘要: |
| 在电子战多频段跳频信号实时截获、雷达厘米级高分辨率探测、高速数据传输信号完整性测试等前沿军事及高技术领域,信号的瞬时带宽已突破8 GHz,而目前主流的中高端频谱仪瞬时带宽仅为2~4 GHz,已难以满足这些信号测试场景的使用要求。针对该问题,提出了一种新型硬件架构的频谱分析仪,其瞬时带宽可达9 GHz。解析了该分析仪主要组成部分的设计方案,基于射频直采和高速串行总线传输技术,仅使用8条差分信号线实现了158.4 Gb/s的高速数据传输。同时介绍了速率适配数据处理等关键技术,阐述了通信接口的逻辑设计,并论证了分析仪的主要性能指标。该分析仪具备9 GHz瞬时带宽信号的无失真捕获与实时分析能力,可解决主流频谱仪无法分析更大瞬时带宽信号的问题,其技术具备先进性,瞬时带宽性能在行业内处于领先水平。 |
| 关键词: 信号测试 超大瞬时带宽 射频直采 高速数据传输 |
| DOI:10.20079/j.issn.1001-893x.251031003 |
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| 基金项目: |
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| Hardware Design of a 9 GHz Ultra-wide Instantaneous Bandwidth Spectrum Analyzer |
| CHEN Feilong |
| (Chengdu Spaceon T&C Technology Co.,Ltd.,Chengdu 611731,China) |
| Abstract: |
| In the latest military and high-tech fields such as real-time interception of multi-band frequency hopping signals in electronic warfare,centimeter-level high-resolution radar detection,and signal integrity test for high-speed data transmission,the instantaneous bandwidth of signals has exceeded 8 GHz.However,the leading spectrum analyzers only provide an instantaneous bandwidth of 2~4 GHz,which can hardly meet the usage requirements of these signal test scenarios.To address this issue,a spectrum analyzer with new hardware architecture is proposed.Its instantaneous bandwidth reaches 9 GHz.The design of its main components is analyzed.Based on RF direct sampling and high-speed serial bus transmission technology,high-speed data transmission of 158.4 Gb/s is achieved by using only 8 differential pairs.Meanwhile,key technologies such as rate-adaptive data processing are introduced,and the logic design of communication is elaborated,and the key specifications are verified.The lossless capture and real-time analysis of signals with 9 GHz instantaneous bandwidth are realized,indicating that the analyzer can solve the problem that leading spectrum analyzers cannot analyze signals with higher instantaneous bandwidth.With advanced technologies,its instantaneous bandwidth performance is in a leading level within the industry. |
| Key words: signals test ultra-wide instantaneous bandwidth RF direct sampling high-speed data transmission |