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首页> 外文期刊>IEEE transactions on industrial informatics >Delay and Jitter Characterization for Software-Based Clock Synchronization Over WLAN Using PTP
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Delay and Jitter Characterization for Software-Based Clock Synchronization Over WLAN Using PTP

机译:使用PTP在WLAN上基于软件的时钟同步的延迟和抖动特性

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摘要

In distributed systems, clock synchronization performance is hampered by delays and jitter accumulated not only in the network, but also in the timestamping procedures of the devices being synchronized. This is particularly critical in software timestamp-based synchronization where both software- and hardware-related sources contribute to this behavior. Usually, these synchronization impairments are collapsed into a black-box performance figure without quantifying the impact of each individual source, which obscures the picture and reduces the possibility to find optimized remedies. In this study, for the first time, the individual sources of delay and jitter are investigated for an IEEE 802.11 wireless local area network (WLAN) synchronization system using the IEEE 1588 protocol and software timestamps. Novel measurement techniques are proposed to quantify the hardware- and software-related delay and jitter mechanisms. It is shown that the delays and their associated jitter originate from both the WLAN chipset and the host computer. Moreover, the delay from the chipset cannot be considered symmetric and any such assumption inevitably leads to a residual offset, and thus to synchronization inaccuracy. Therefore, a calibration-based approach is proposed to compensate for these delays and to improve the performance of WLAN synchronization. Experimental results show that with optimal error compensation, a similar synchronization performance as software-based synchronization in Ethernet networks can be achieved.
机译:在分布式系统中,时钟同步性能不仅受到网络中累积的延迟和抖动的影响,而且还受到同步设备时间戳记过程中累积的抖动的影响。这在基于软件时间戳的同步中尤其重要,在该同步中,与软件和硬件相关的源均会导致此行为。通常,这些同步减损被归类为黑匣子性能指标,而没有量化每个单独来源的影响,这使情况变得模糊,并降低了寻找最佳补救措施的可能性。在本研究中,这是首次使用IEEE 1588协议和软件时间戳针对IEEE 802.11无线局域网(WLAN)同步系统研究延迟和抖动的各个来源。提出了新颖的测量技术来量化与硬件和软件有关的延迟和抖动机制。结果表明,延迟及其相关的抖动源于WLAN芯片组和主机。而且,来自芯片组的延迟不能被认为是对称的,任何这样的假设都不可避免地导致残留偏移,从而导致同步误差。因此,提出了一种基于校准的方法来补偿这些延迟并改善WLAN同步的性能。实验结果表明,通过最佳错误补偿,可以实现与以太网网络中基于软件的同步类似的同步性能。

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