单片机与嵌入式系统应用2025,Vol.25Issue(1) :23-28.DOI:10.20193/j.ices2097-4191.2024.0073

宇航用抗辐射光收发器件的技术特性与标准研究

Research on technical characteristics and standards of anti-radiation optical transceivers for aerospace applications

季轩 刘文宝 李昊 邱晨 周宇 赵学峰 司马栋梁 张健 代双磊 石遂兴 刘瑞雪 许明康
单片机与嵌入式系统应用2025,Vol.25Issue(1) :23-28.DOI:10.20193/j.ices2097-4191.2024.0073

宇航用抗辐射光收发器件的技术特性与标准研究

Research on technical characteristics and standards of anti-radiation optical transceivers for aerospace applications

季轩 1刘文宝 1李昊 1邱晨 1周宇 1赵学峰 2司马栋梁 2张健 3代双磊 3石遂兴 1刘瑞雪 1许明康1
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作者信息

  • 1. 中国航天标准化与产品保证研究院,北京 100071
  • 2. 中航光电科技股份有限公司,洛阳 471003
  • 3. 青岛兴航光电技术有限公司,青岛 266100
  • 折叠

摘要

宇航用抗辐射光收发模块可实现宇航应用环境下的高速多路并行电光转换传输功能,并实现高速信号的光传输,解决星载数据传输的瓶颈,从传输架构上降低了系统重量,提升了传输带宽,具有里程碑式的意义.本文详细分析了其工作原理、结构组成和相关特性,结合具体应用环境,对某抗辐照12路并行光收发模块的功能性能、质量可靠性和环境适应性进行分析,并基于产品定义和用户需求,正向设计了标准的指标体系和考核要求,为新型光模块产品的标准制定提供指导.

Abstract

The space radiation-resistant optical transceiver module is capable of realizing high-speed parallel optical-electrical conversion and transmission functions within the space application environment.By employing optical means,it achieves the transmission of high-speed signals,thereby addressing the bottleneck issue of data transmission in spaceborne systems and reducing the overall system weight through an optimized transmission architecture.This advancement holds significant milestone value.This paper provides a detailed anal-ysis of the module's working principles,structural composition,and associated characteristics.Furthermore,it evaluates the functional performance,quality reliability,and environmental adaptability of a particular 12-channel parallel optical transceiver module that is re-sistant to radiation,considering its specific application context.Based on the product definition and user requirements,a standardized in-dex system and assessment criteria have been developed in a forward-thinking approach,offering guidance for the standardization of no-vel optical module products.

关键词

光收发模块/抗辐射/光-电转换/电-光转换

Key words

optical transceiver modules/anti-radiation/photoelectric conversion/electro-optical conversion

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出版年

2025
单片机与嵌入式系统应用
北京航空航天大学

单片机与嵌入式系统应用

CSTPCDCSCD
影响因子:0.306
ISSN:1009-623X
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