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Problems and solutions for refitting a sensor network with IEEE1588 clock synchronisation

机译:使用IEEE1588时钟同步改装传感器网络的问题和解决方案

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Nowadays, multiple sensor nodes are often incorporated into technical solutions forming distributed sensor systems. Herein, advanced detection mechanisms are often realised by using data from multiple sensors in such a network. However, sometimes active sensors - like Time-Of-Flight cameras - interfere with each other. To solve this problem and assist in data correlation, a clock synchronisation method, like IEEE1588, can be adapted. Although, if the sensor nodes have not been developed with this in mind they have to be refitted. An optimal refit of a system is the one that needs the least modifications necessary to achieve the desired goal. This paper lists the impact - in terms of jitter and asymmetry - that different components of a system have on IEEE1588 synchronisation precision and methods to eliminate or alleviate jitter and asymmetry sources in order to enable respective sensor fusion.
机译:如今,通常将多个传感器节点合并到形成分布式传感器系统的技术解决方案中。在本文中,通常通过使用来自这种网络中的多个传感器的数据来实现高级检测机制。但是,有时有源传感器(例如飞行时间相机)会相互干扰。为了解决此问题并协助数据关联,可以采用时钟同步方法,例如IEEE1588。但是,如果尚未考虑到传感器节点的开发,则必须重新安装它们。系统的最佳改装是需要最少修改即可实现所需目标的改装。本文就抖动和非对称性列出了系统的不同组件对IEEE1588同步精度的影响,以及消除或减轻抖动和非对称性源以实现各自传感器融合的方法。

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