ICT Based HIL Validation of Voltage Control Coordination in Smart Grids Scenarios

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Resumé

This paper aims to validate the capability of renewable generation (ReGen) plants to provide online voltage control coordination ancillary service to the system operators. Simulation studies on online coordination concepts from ReGen plants have already been identified in previous publications. However, here, the results are validated through a real-time Hardware-In-The-Loop framework using an exemplary benchmark grid area in Denmark as a base case that includes flexible renewable power plants providing voltage control functionality. The provision of voltage control support from ReGen plants is verified on a large-scale power system against the baseline scenario, considering the hierarchical industrial controller platforms used nowadays in power plants. Moreover, the verification of online voltage control support is carried out by taking into account a communication network as well as the associated data traffic patterns obtained from a real network. Based on the sets of recordings, guidelines and recommendations for practical implementation of the developed control algorithms for targeted ancillary service are made. This provides a deep insight for stakeholders i.e. wind turbines and PV system manufacturers, system operators regarding the existing boundaries for current technologies and requirements for accommodating the new ancillary services in industrial application.
OriginalsprogEngelsk
Artikelnummer1327
TidsskriftEnergies
Vol/bind11
Udgave nummer6
Antal sider25
ISSN1996-1073
DOI
StatusUdgivet - 2018

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Smart Grid
Voltage control
Voltage
Scenarios
Power Plant
Power plants
Hardware-in-the-loop
Wind Turbine
Large-scale Systems
Industrial Application
Operator
Communication Networks
Power System
Wind turbines
Control Algorithm
Industrial applications
Telecommunication networks
Recommendations
Baseline
Traffic

Citer dette

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title = "ICT Based HIL Validation of Voltage Control Coordination in Smart Grids Scenarios",
abstract = "This paper aims to validate the capability of renewable generation (ReGen) plants to provide online voltage control coordination ancillary service to the system operators. Simulation studies on online coordination concepts from ReGen plants have already been identified in previous publications. However, here, the results are validated through a real-time Hardware-In-The-Loop framework using an exemplary benchmark grid area in Denmark as a base case that includes flexible renewable power plants providing voltage control functionality. The provision of voltage control support from ReGen plants is verified on a large-scale power system against the baseline scenario, considering the hierarchical industrial controller platforms used nowadays in power plants. Moreover, the verification of online voltage control support is carried out by taking into account a communication network as well as the associated data traffic patterns obtained from a real network. Based on the sets of recordings, guidelines and recommendations for practical implementation of the developed control algorithms for targeted ancillary service are made. This provides a deep insight for stakeholders i.e. wind turbines and PV system manufacturers, system operators regarding the existing boundaries for current technologies and requirements for accommodating the new ancillary services in industrial application.",
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ICT Based HIL Validation of Voltage Control Coordination in Smart Grids Scenarios. / Shahid, Kamal; Petersen, Lennart; Olsen, Rasmus Løvenstein; Iov, Florin.

I: Energies, Bind 11, Nr. 6, 1327, 2018.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

TY - JOUR

T1 - ICT Based HIL Validation of Voltage Control Coordination in Smart Grids Scenarios

AU - Shahid, Kamal

AU - Petersen, Lennart

AU - Olsen, Rasmus Løvenstein

AU - Iov, Florin

PY - 2018

Y1 - 2018

N2 - This paper aims to validate the capability of renewable generation (ReGen) plants to provide online voltage control coordination ancillary service to the system operators. Simulation studies on online coordination concepts from ReGen plants have already been identified in previous publications. However, here, the results are validated through a real-time Hardware-In-The-Loop framework using an exemplary benchmark grid area in Denmark as a base case that includes flexible renewable power plants providing voltage control functionality. The provision of voltage control support from ReGen plants is verified on a large-scale power system against the baseline scenario, considering the hierarchical industrial controller platforms used nowadays in power plants. Moreover, the verification of online voltage control support is carried out by taking into account a communication network as well as the associated data traffic patterns obtained from a real network. Based on the sets of recordings, guidelines and recommendations for practical implementation of the developed control algorithms for targeted ancillary service are made. This provides a deep insight for stakeholders i.e. wind turbines and PV system manufacturers, system operators regarding the existing boundaries for current technologies and requirements for accommodating the new ancillary services in industrial application.

AB - This paper aims to validate the capability of renewable generation (ReGen) plants to provide online voltage control coordination ancillary service to the system operators. Simulation studies on online coordination concepts from ReGen plants have already been identified in previous publications. However, here, the results are validated through a real-time Hardware-In-The-Loop framework using an exemplary benchmark grid area in Denmark as a base case that includes flexible renewable power plants providing voltage control functionality. The provision of voltage control support from ReGen plants is verified on a large-scale power system against the baseline scenario, considering the hierarchical industrial controller platforms used nowadays in power plants. Moreover, the verification of online voltage control support is carried out by taking into account a communication network as well as the associated data traffic patterns obtained from a real network. Based on the sets of recordings, guidelines and recommendations for practical implementation of the developed control algorithms for targeted ancillary service are made. This provides a deep insight for stakeholders i.e. wind turbines and PV system manufacturers, system operators regarding the existing boundaries for current technologies and requirements for accommodating the new ancillary services in industrial application.

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VL - 11

JO - Energies

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SN - 1996-1073

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