基于TTE时间触发以太网的遥测通信技术研究

Baohua Wang, Shuai Han, Jingang Zhang, Jiayi Wu, W. Meng
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引用次数: 0

摘要

本文首先介绍了TTE时间触发以太网的时间同步、时间触发、冗余通信等特点,然后介绍了传统遥测系统的遥测通信架构、系统同步能力和系统同步特点,以及传统遥测系统存在的不足。提出了基于TTE时间触发以太网的遥测系统,该系统不仅具有TTE网络的时间同步、时间触发、高速传输和双冗余等特点,而且与传统遥测系统兼容。采用“两级数据集成”解决了遥测系统应用TTE时间触发以太网时可能遇到的遥测帧数据不完整、地面解调丢锁等问题,遥测带宽利用率达99%,相当于传统遥测系统的有效遥测带宽。TTE时间触发以太网应用于遥测系统后,地面软件处理需要进行数据处理,逐步恢复遥测数据,以保证与传统遥测系统兼容。
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Research of Telemetry Communication Technology Based on TTE Time Triggered Ethernet
This paper first introduces the time synchronization, time triggering, redundant communication and other characteristics of TTE time triggered Ethernet, and then presents the telemetry communication architecture, system synchronization capability and system synchronization characteristics of the traditional telemetry system, as well as the shortcomings of the traditional telemetry system. The telemetry system is proposed based on TTE time triggered Ethernet, which not only has the characteristics of time synchronization, time triggering, high-speed transmission and double redundancy of the TTE network, but also is compatible with the traditional telemetry system. The "two-level data integration" is adopted to solve the problems of incomplete telemetry frame data and ground demodulation lock loss that may be encountered when the telemetry system applies TTE time triggered Ethernet, and the utilization rate of telemetry bandwidth is 99%, which is equivalent to the effective telemetry bandwidth of traditional telemetry systems. After TTE time triggered Ethernet is applied to the telemetry system, the ground software processing needs data processing to recover telemetry data step by step to ensure compatibility with traditional telemetry systems.
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