Modern Real Time Ethernet technologies rely on well-described hardware acceleration techniques to ensure that hard real-time deadlines are met. Real Time Ethernet is also often used in situations where appreciable non real-time bandwidth is used and where throughput is important. In this paper, using the example of PROFINET, we examine the performance of various communication controller architectures in non-real-time data handling. Finding the performance not up to industry requirements we propose a multiprocessor architecture and describe an implementation and measurement results. This architecture allows better partitioning of communication and application processing whilst supporting maximum bandwidth utilization for non-real-time traffi...
The evolution of industrial communication inexorably moves towards Ethernet based networks. One impo...
Abstract: The fieldbus systems have been successfully introduced in the industrial automation. Nowad...
Advanced embedded systems can consist of many sensors, actuators and processors that are deployed on...
Modern Real Time Ethernet technologies rely on well-described hardware acceleration techniques to en...
In this paper we examine architectures for non-real time (NRT) traffic handling in PROFINET nodes. M...
In this paper we examine architectures for non-real time (NRT) traffic handling in PROFINET nodes. M...
The PROFINET IEC 61158 standardized Real Time Ethernet (RTE) protocol, Class C, has traditionally be...
The PROFINET IEC 61158 standardized Real Time Ethernet (RTE) protocol, Class C, has traditionally be...
The PROFINET IEC 61158 standardized Real Time Ethernet (RTE) protocol, Class C, has traditionally be...
Distributed real-time applications implement distributed applications with timeliness requirements. ...
Distributed real-time applications implement distributed applications with timeliness requirements. ...
Popular wisdom says Ethernet is non-deterministic. This characteristic leads to consider it unsuitab...
Nowadays, different companies use Ethernet for different industrial applications. Industrial Etherne...
Advanced embedded systems can consist of many sensors, actuators and processors that aredeployed on ...
This paper focuses on developing and analyzing support for real-time traffic over a switched Ethernet ...
The evolution of industrial communication inexorably moves towards Ethernet based networks. One impo...
Abstract: The fieldbus systems have been successfully introduced in the industrial automation. Nowad...
Advanced embedded systems can consist of many sensors, actuators and processors that are deployed on...
Modern Real Time Ethernet technologies rely on well-described hardware acceleration techniques to en...
In this paper we examine architectures for non-real time (NRT) traffic handling in PROFINET nodes. M...
In this paper we examine architectures for non-real time (NRT) traffic handling in PROFINET nodes. M...
The PROFINET IEC 61158 standardized Real Time Ethernet (RTE) protocol, Class C, has traditionally be...
The PROFINET IEC 61158 standardized Real Time Ethernet (RTE) protocol, Class C, has traditionally be...
The PROFINET IEC 61158 standardized Real Time Ethernet (RTE) protocol, Class C, has traditionally be...
Distributed real-time applications implement distributed applications with timeliness requirements. ...
Distributed real-time applications implement distributed applications with timeliness requirements. ...
Popular wisdom says Ethernet is non-deterministic. This characteristic leads to consider it unsuitab...
Nowadays, different companies use Ethernet for different industrial applications. Industrial Etherne...
Advanced embedded systems can consist of many sensors, actuators and processors that aredeployed on ...
This paper focuses on developing and analyzing support for real-time traffic over a switched Ethernet ...
The evolution of industrial communication inexorably moves towards Ethernet based networks. One impo...
Abstract: The fieldbus systems have been successfully introduced in the industrial automation. Nowad...
Advanced embedded systems can consist of many sensors, actuators and processors that are deployed on...