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星载高速串行数据处理系统设计与实现
引用本文:宋景星,朱岩,饶家宁,安军社. 星载高速串行数据处理系统设计与实现[J]. 空间科学学报, 2023, 43(1): 174-182. DOI: 10.11728/cjss2023.01.220112005
作者姓名:宋景星  朱岩  饶家宁  安军社
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 100190
基金项目:国家重点研发计划项目资助(2022YFF0503903)
摘    要:遥感卫星图像数据量的高速增长,以及遥感卫星搭载的相机不同工作模式下产生的数据差异化处理的需求,为星间数据处理带来了巨大挑战。针对星载Gbit·s–1级高速数据收发及文件缓存等星间数据处理面临的问题,以百兆每秒级星载高速接收缓存系统为切入点,以遥感卫星数据处理的发展为依据,在分析SerDes传输原理的基础上,采用模型仿真和工程验证的方法,制定了高速串行数据链路层传输协议SSLLP(Satellite Serial Link Layer Protocol)和类文件化高速缓存的策略。在硬件设计和软件开发的基础上,最终完成了具备处理入口速率3.2 Gbit·s–1并能以类文件化的方式缓存64个数据文件的星载数据处理单元的工程实现。测试结果表明,基于SSLLP的高速串行数据接收正确,缓存策略有效,系统高效可靠。该设计已在某型号任务中取得在轨验证,为星载高速串行数据处理系统提供了参考。

关 键 词:星载  高速串行总线  数据处理
收稿时间:2022-01-11

Design and Implement of High-speed Receiving Cache System of the Satellite
Affiliation:1.Key Laboratory of Electronics and Information Technology for Space Systems, National Space Science Center,Chinese Academy of Sciences, Beijing 1001902.University of Chinese Academy of Sciences, Beijing 100049
Abstract:Recently with the development of space technology, the explosive growth of remote sensing satellite image data and the demand for multi-mode operation of a remote sensing satellite camera, have produced the differential processing of different data. At the same time, it also has brought great challenges for inter-satellite data processing. The purpose of this research is to solve the problems of inter-satellite data processing, such as gigabits per second high-speed data transceiver, datas storage, file cache and so on. This study investigates the development of remote sensing satellite data processing, analyzes the transmission principle of SerDes, and formulates the operation strategy of documented class of high-speed cache. Based on hardware design and software development, the project of high-speed space-borne data processing unit with 3.2 bit·s–1 level and 64 data documents is completed. The test results show that based on SSLLP (Satellite Serial Link Layer Protocol), the high-speed serial data reception is correct and the cache strategy is effective. Most important of all, the system is efficient and reliable. This design has been applied to some on-orbit model missions, providing a reference to the design of high-speed receiving cache system of the satellite. 
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