Clock Synchronization Accuracy of Power Line Communication Connected Devices: a Case Study

Ž. Nakutis, Vytautas Daunoras, Tadas Rybelis, P. Kuzas, Kipras Jasiūas
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Abstract

In this paper a case study of two network nodes interconnected over power line communication technology is provided. Standard ping utility was modified to generate timestamps corresponding to those used in SNTP. Experimental estimation of the round trip delay and clock offset was carried out utilizing ST8500 PLC-G3 modems from ST Microelectronics. It was found that uplink and downlink delays exhibit a jitter causing communication channel asymmetry which is detrimental for the accuracy of the SNTP clock synchronization. It is suspected that the reason of uplink and downlink delays jitter is mainly due to RTOS controlled software implementing communication stacks on both client and server sides. Nevertheless, the accuracy of clock adjustment may be improved by averaging a group of clock offset estimates. In particular, to achieve approximately 10 ms accuracy 100 SNTP transactions has to be completed and the mean offset used to adjust the client clock.
电力线通信连接设备时钟同步精度的案例研究
本文给出了两个网络节点通过电力线通信技术互联的实例研究。修改了标准ping实用程序,以生成与SNTP中使用的时间戳相对应的时间戳。利用意法半导体的ST8500 PLC-G3调制解调器进行了往返时延和时钟偏移的实验估计。研究发现,上行链路和下行链路的时延会产生抖动,导致通信信道不对称,不利于SNTP时钟同步的准确性。推测上下行时延抖动的主要原因是RTOS控制软件在客户端和服务器端实现通信栈。然而,通过对一组时钟偏移估计进行平均,可以提高时钟调整的精度。特别是,为了达到大约10毫秒的精度,必须完成100个SNTP事务,并使用平均偏移量来调整客户端时钟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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