The present study explores an IEEE1588 Synchronizing System for smart distribution grid based on Industrial Ethernet. The paper first analyzes the communication system in distribution network and then proposed the pro...The present study explores an IEEE1588 Synchronizing System for smart distribution grid based on Industrial Ethernet. The paper first analyzes the communication system in distribution network and then proposed the project of time synchronizing system using IEEE1588 in distribution network. The study focuses on rational clock correcting time region segmentation, selecting the best clock source injection point and multiple redundant methods when correcting time method lose efficacy, etc. The precision of time synchronizing is better than that of 1 millisecond.展开更多
为解决配电网中配电终端的同步对时问题,提出利用网络测量和控制系统精确时钟同步协议标准(standard for a precision clock synchronization protocol for network measurement and control system,IEEE 1588)实现配电终端同步对时的...为解决配电网中配电终端的同步对时问题,提出利用网络测量和控制系统精确时钟同步协议标准(standard for a precision clock synchronization protocol for network measurement and control system,IEEE 1588)实现配电终端同步对时的方法。深入研究IEEE 1588中的时钟类型、IEEE 1588报文格式、延迟请求响应机制和IEEE 1588时钟同步过程,并提供基于IEEE 1588的配电网同步对时网络的实例。通过系统测试,对精度、馈线自动化测控终端(feeder terminal unit,FTU)的B码对接性能和同步可靠性进行全面检测,证明了基于IEEE 1588的配电网同步对时网络的优越性。展开更多
文摘The present study explores an IEEE1588 Synchronizing System for smart distribution grid based on Industrial Ethernet. The paper first analyzes the communication system in distribution network and then proposed the project of time synchronizing system using IEEE1588 in distribution network. The study focuses on rational clock correcting time region segmentation, selecting the best clock source injection point and multiple redundant methods when correcting time method lose efficacy, etc. The precision of time synchronizing is better than that of 1 millisecond.
文摘为解决配电网中配电终端的同步对时问题,提出利用网络测量和控制系统精确时钟同步协议标准(standard for a precision clock synchronization protocol for network measurement and control system,IEEE 1588)实现配电终端同步对时的方法。深入研究IEEE 1588中的时钟类型、IEEE 1588报文格式、延迟请求响应机制和IEEE 1588时钟同步过程,并提供基于IEEE 1588的配电网同步对时网络的实例。通过系统测试,对精度、馈线自动化测控终端(feeder terminal unit,FTU)的B码对接性能和同步可靠性进行全面检测,证明了基于IEEE 1588的配电网同步对时网络的优越性。