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Ka频段飞行器测控与通信系统设计
引用本文:邱长泉,袁延荣,施睿,李萌.Ka频段飞行器测控与通信系统设计[J].计算机测量与控制,2017,25(10):271-273, 277.
作者姓名:邱长泉  袁延荣  施睿  李萌
作者单位:空间物理重点实验室,北京 100076,空间物理重点实验室,北京 100076,空间物理重点实验室,北京 100076,空间物理重点实验室,北京 100076
摘    要:传统基于S频段的统一载波测控通信系统受工作频率低、占用频带窄的特点限制,无法满足现代及未来飞行器测控与通信系统对于高速数传、通信带宽、安装空间、克服“黑障”及抗干扰性等方面日益增长的需求,提出一种Ka频段直接序列扩频体制的飞行器测控与通信系统以解决上述问题;利用Ka频段频带宽、空间选择性好、减小“黑障”影响等特点,同时采用直接序列扩频通信体制实现遥测、外测和遥控等不同功能点频统一和信道统一,简化系统结构、减小设备体积;介绍了系统架构及主要设备组成,阐述了基带数据综合设备、Ka频段一体化终端设备等单机的详细设计及天线的选择,并给出了地面测试系统方案;该系统具备体积小、频带宽、扩展性好等特点,可满足未来飞行器测控与通信系统的设计与应用需求。

关 键 词:Ka频段  测控与通信  直接序列扩频  飞行器
收稿时间:2017/6/20 0:00:00
修稿时间:2017/7/19 0:00:00

Design of Ka Band TT&C and Communication System of Spacecraft
Qiu Changquan,Yuan Yanrong,Shi Rui and Li Meng.Design of Ka Band TT&C and Communication System of Spacecraft[J].Computer Measurement & Control,2017,25(10):271-273, 277.
Authors:Qiu Changquan  Yuan Yanrong  Shi Rui and Li Meng
Affiliation:Science and Technology on Space Physics Laboratory, Beijing 100076, China,Science and Technology on Space Physics Laboratory, Beijing 100076, China,Science and Technology on Space Physics Laboratory, Beijing 100076, China and Science and Technology on Space Physics Laboratory, Beijing 100076, China
Abstract:Traditional S-band-based unified carrier measurement control and communication system limited by the low working frequency and narrow bandwidth can not meet the increasing requirements of modern and future spacecraft measurement control and communication system for high-speed data transmission, communication bandwidth, installation space, overcoming blackout, anti-interference, etc. This paper put forward a Ka-band direct sequence spread spectrum system spacecraft control and communication system , which has the characteristics of narrow band, good space selecting and blackout overcoming, to solve the above problems by the point frequency and channel unity of telemetry, orbit measurement system and remote control, simplifying the system structure and reducing equipment size. The system architecture and the main equipment of the system are introduced, the detailed design of the data acquisition equipment, Ka-band integrated terminal equipment and the selection of the antenna feeder equipment are described, and the ground test system is presented. The system has the characteristics of small size, wide bandwidth and good expansibility, which can meet the requirements of the design and application of future spacecraft measurement control and communication system.
Keywords:Ka band  TT&C and communication  DSSS  spacecraft
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