基于最小二乘算法的时间触发以太网时钟同步补偿

Yingjing Zhang, Feng He, Guangshan Lu, Huagang Xiong
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引用次数: 11

摘要

时间触发通信(TT)能够满足分布式集成模块化航空电子(DIMA)的要求,提高了通信的实时性和数据包传输的确定性。由于源端和目的端系统之间存在时钟偏差,端到端性能不准确。因此,时钟同步服务对于时间触发以太网(Time-Triggered Ethernet, tethernet)中TT报文的传输至关重要。时钟同步服务分为外部同步服务和内部同步服务。两种服务之间的主要区别是存在标准时间基础。AS6802作为以太网内部同步服务标准,用于计算终端系统时间戳值之间的平均差值。然而,计算后的时钟补偿策略尚未得到讨论。提出了一种基于修正最小二乘(LS)的补偿算法。利用LS方法可以在线消除时钟偏差,使时钟完全同步。首先,分析了时钟偏移原因的基本理论,研究了以太网时钟同步的过程;其次,由于温度变化或老化,时钟的漂移速率不断变化。因此,时钟的模型是尽可能精确的;搭建了仿真平台,包括终端系统、交换机模型、网络拓扑等,验证了补偿算法的有效性;最后,本文的方法与传统的薪酬政策进行了比较。仿真结果表明,本文算法可以获得比其他算法更好的时钟同步精度。
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Clock synchronization compensation of Time-Triggered Ethernet based on least squares algorithm
Time-Triggered (TT) communication, which enhances real-time requirement and packets transmission certainty, can satisfy the requirements of Distributed Integrated Modular Avionic (DIMA). Due to clock skew between source end and destination systems, the end to end performance is inaccurate. Therefore, clock synchronization service is crucial for TT messages transmission in Time-Triggered Ethernet (TTEthernet). There are two kinds of clock synchronization services: external synchronization service and internal synchronization service. The main difference between two services is the presence of a standard time basis. As an internal synchronization service standard of TTEthernet, AS6802 is used to calculate the average difference between timestamp values of end systems in TTEthernet. However, the clock compensation policy after calculation has not been discussed. In this paper, the compensated algorithm based on modified least squares (LS) is proposed. The clock skew can be eliminated online by LS method to get clocks perfectly synchronized. First, the basic theories about reasons of clock offset are analyzed and the process of clock synchronization in TTEthernet is researched; second, the drifted rates of clocks are changed incessantly due to temperature variation or aging. On that account, clocks are modeled as accurately as possible; besides, the simulation platform is built, including end systems, switch models, network topology to verify the effectiveness of the compensated algorithm; finally, the method of this paper compares with the traditional compensation policies. Simulation shows algorithm in the paper can obtain better clock synchronization precision than other algorithms.
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