The Experts below are selected from a list of 12693 Experts worldwide ranked by ideXlab platform
Abdelaziz Ahmed-nacer - One of the best experts on this subject based on the ideXlab platform.
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IEC 61850 over TSN: Traffic Mapping and delay analysis of GOOSE Traffic
2020Co-Authors: Theo Docquier, Ye-qiong Song, Vincent Chevrier, Ludovic Pontnau, Abdelaziz Ahmed-nacerAbstract:IEC 61850 has become the reference standard for Substation Automation Systems (SAS) in smart power grids. Current IEC 61850 compliant SAS use Ethernet technology for both Event-Triggered (ET) and Time-Triggered (TT) Traffic to transport highly critical messages requiring low-latency guarantees. However the real-time guarantee is often achieved by over-provisioning network resources. In this paper we study the potentials of using Time-Sensitive Networking (TSN) in SAS. TSN adds real-time enhancement to the existing IEEE 802.1Q standard by providing several new Traffic shapers. If TT Traffic can be guaranteed by scheduling its transmission at the right time using TSN time-aware shaper, it is not the case for ET Traffic. The paper contribution is twofold: proposing a first Mapping of the IEC 61850 protocols to the TSN Traffic classes, based on the analysis of both TSN and IEC 61850 protocols; and developing an exact worst-case delay (WCD) analysis for ET Traffic. The tightness of the developed WCD analysis has be shown by simulations.
Ahmed-nacer Abdelaziz - One of the best experts on this subject based on the ideXlab platform.
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IEC 61850 over TSN: Traffic Mapping and delay analysis of GOOSE Traffic
'Institute of Electrical and Electronics Engineers (IEEE)', 2020Co-Authors: Docquier Theo, Song Ye-qiong, Chevrier Vincent, Pontnau Ludovic, Ahmed-nacer AbdelazizAbstract:International audienceIEC 61850 has become the reference standard for Substation Automation Systems (SAS) in smart power grids. Current IEC 61850 compliant SAS use Ethernet technology for both Event-Triggered (ET) and Time-Triggered (TT) Traffic to transport highly critical messages requiring low-latency guarantees. However the real-time guarantee is often achieved by over-provisioning network resources. In this paper we study the potentials of using Time-Sensitive Networking (TSN) in SAS. TSN adds real-time enhancement to the existing IEEE 802.1Q standard by providing several new Traffic shapers. If TT Traffic can be guaranteed by scheduling its transmission at the right time using TSN time-aware shaper, it is not the case for ET Traffic. The paper contribution is twofold: proposing a first Mapping of the IEC 61850 protocols to the TSN Traffic classes, based on the analysis of both TSN and IEC 61850 protocols; and developing an exact worst-case delay (WCD) analysis for ET Traffic. The tightness of the developed WCD analysis has be shown by simulations
Theo Docquier - One of the best experts on this subject based on the ideXlab platform.
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IEC 61850 over TSN: Traffic Mapping and delay analysis of GOOSE Traffic
2020Co-Authors: Theo Docquier, Ye-qiong Song, Vincent Chevrier, Ludovic Pontnau, Abdelaziz Ahmed-nacerAbstract:IEC 61850 has become the reference standard for Substation Automation Systems (SAS) in smart power grids. Current IEC 61850 compliant SAS use Ethernet technology for both Event-Triggered (ET) and Time-Triggered (TT) Traffic to transport highly critical messages requiring low-latency guarantees. However the real-time guarantee is often achieved by over-provisioning network resources. In this paper we study the potentials of using Time-Sensitive Networking (TSN) in SAS. TSN adds real-time enhancement to the existing IEEE 802.1Q standard by providing several new Traffic shapers. If TT Traffic can be guaranteed by scheduling its transmission at the right time using TSN time-aware shaper, it is not the case for ET Traffic. The paper contribution is twofold: proposing a first Mapping of the IEC 61850 protocols to the TSN Traffic classes, based on the analysis of both TSN and IEC 61850 protocols; and developing an exact worst-case delay (WCD) analysis for ET Traffic. The tightness of the developed WCD analysis has be shown by simulations.
Docquier Theo - One of the best experts on this subject based on the ideXlab platform.
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IEC 61850 over TSN: Traffic Mapping and delay analysis of GOOSE Traffic
'Institute of Electrical and Electronics Engineers (IEEE)', 2020Co-Authors: Docquier Theo, Song Ye-qiong, Chevrier Vincent, Pontnau Ludovic, Ahmed-nacer AbdelazizAbstract:International audienceIEC 61850 has become the reference standard for Substation Automation Systems (SAS) in smart power grids. Current IEC 61850 compliant SAS use Ethernet technology for both Event-Triggered (ET) and Time-Triggered (TT) Traffic to transport highly critical messages requiring low-latency guarantees. However the real-time guarantee is often achieved by over-provisioning network resources. In this paper we study the potentials of using Time-Sensitive Networking (TSN) in SAS. TSN adds real-time enhancement to the existing IEEE 802.1Q standard by providing several new Traffic shapers. If TT Traffic can be guaranteed by scheduling its transmission at the right time using TSN time-aware shaper, it is not the case for ET Traffic. The paper contribution is twofold: proposing a first Mapping of the IEC 61850 protocols to the TSN Traffic classes, based on the analysis of both TSN and IEC 61850 protocols; and developing an exact worst-case delay (WCD) analysis for ET Traffic. The tightness of the developed WCD analysis has be shown by simulations
Vincent Chevrier - One of the best experts on this subject based on the ideXlab platform.
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IEC 61850 over TSN: Traffic Mapping and delay analysis of GOOSE Traffic
2020Co-Authors: Theo Docquier, Ye-qiong Song, Vincent Chevrier, Ludovic Pontnau, Abdelaziz Ahmed-nacerAbstract:IEC 61850 has become the reference standard for Substation Automation Systems (SAS) in smart power grids. Current IEC 61850 compliant SAS use Ethernet technology for both Event-Triggered (ET) and Time-Triggered (TT) Traffic to transport highly critical messages requiring low-latency guarantees. However the real-time guarantee is often achieved by over-provisioning network resources. In this paper we study the potentials of using Time-Sensitive Networking (TSN) in SAS. TSN adds real-time enhancement to the existing IEEE 802.1Q standard by providing several new Traffic shapers. If TT Traffic can be guaranteed by scheduling its transmission at the right time using TSN time-aware shaper, it is not the case for ET Traffic. The paper contribution is twofold: proposing a first Mapping of the IEC 61850 protocols to the TSN Traffic classes, based on the analysis of both TSN and IEC 61850 protocols; and developing an exact worst-case delay (WCD) analysis for ET Traffic. The tightness of the developed WCD analysis has be shown by simulations.