Highly accurate synchronization has become a major requirement because of the rise of distributed applications, regulatory requests and position, navigation and timing backup needs. This fact has led to the development of new technologies which fulfill the new requirements in terms of accuracy and dependability. Nevertheless, some of these novel proposals have lacked determinism, robustness, interoperability, deployability, scalability or management tools preventing them to be extensively used in real industrial scenarios. Different segments require accurate timing information over a large number of nodes. Due to the high availability and low price of global satellite-based time references, many critical distributed facilities depend...
Precision Time Protocol (PTP) is a high precision time synchronization protocol designed to operate ...
Sensor networks applications often involve the collaboration between sensor nodes, thus requiring a ...
The Internet of Things(IoT) is a novel paradigm, where things are in the majority position of produc...
This work was supported in part by EMPIR programme cofinanced by the Participating States and in par...
In modern transmission and distribution networks, monitoring, control and protection tasks are usual...
A high precision time base is important for distributed systems in measurement and automa-tion appli...
A high precision time base is especially important for distributed systems in automation. The Precis...
Time synchronization is a critical feature for many scientific facilities and industrial infrastruc...
Within the context of time dissemination techniques for power systems applications, the paper discus...
The synchronization among Base Stations (BSs) in mobile communication systems is such a vital techn...
The protection of satellite-derived timing information is becoming a fundamental requirement in Indu...
IEEE 1588 specifies a dedicated protocol, the precision time protocol (PTP) for clock synchronizatio...
Accurate time synchronization is important in industrial automation. Precision time protocol (PTP) i...
By using Precision Time Protocol across high-speed data networks, it is possible to achieve good tim...
This paper proposes an energy-efficient time synchronization scheme for Wireless Sensor Networks(WSN...
Precision Time Protocol (PTP) is a high precision time synchronization protocol designed to operate ...
Sensor networks applications often involve the collaboration between sensor nodes, thus requiring a ...
The Internet of Things(IoT) is a novel paradigm, where things are in the majority position of produc...
This work was supported in part by EMPIR programme cofinanced by the Participating States and in par...
In modern transmission and distribution networks, monitoring, control and protection tasks are usual...
A high precision time base is important for distributed systems in measurement and automa-tion appli...
A high precision time base is especially important for distributed systems in automation. The Precis...
Time synchronization is a critical feature for many scientific facilities and industrial infrastruc...
Within the context of time dissemination techniques for power systems applications, the paper discus...
The synchronization among Base Stations (BSs) in mobile communication systems is such a vital techn...
The protection of satellite-derived timing information is becoming a fundamental requirement in Indu...
IEEE 1588 specifies a dedicated protocol, the precision time protocol (PTP) for clock synchronizatio...
Accurate time synchronization is important in industrial automation. Precision time protocol (PTP) i...
By using Precision Time Protocol across high-speed data networks, it is possible to achieve good tim...
This paper proposes an energy-efficient time synchronization scheme for Wireless Sensor Networks(WSN...
Precision Time Protocol (PTP) is a high precision time synchronization protocol designed to operate ...
Sensor networks applications often involve the collaboration between sensor nodes, thus requiring a ...
The Internet of Things(IoT) is a novel paradigm, where things are in the majority position of produc...