Power generation from the renewable energy sources is usually intermittent and uncontrollable which challenges the grid frequency stability. The smart control of loads is an effective means to mitigate the challenge. A decentralized control of heating loads -- industrial melting pots (MPs), was developed which dynamically changes the power consumption of loads in response to grid frequency. A thermodynamic model of MPs was developed and validated based on site measurements by Open Energi. An aggregation of MP models with the control was integrated with a simplified Great Britain power system model. Results showed that MPs are able to provide frequency response in a way similar to generators, which provide a means for the system operator to ...
International audienceWe study the demand-response potential from large numbers of appliances which ...
This paper proposes a control strategy for managing an aggregate of commercial buildings equipped wi...
Frequency stability in electricity networks is essential to the maintenance of supply quality and se...
Power generation from the renewable energy sources is usually intermittent and uncontrollable which ...
As a result of the increasing integration of Renewable Energy Source (RES), maintenance of the balan...
The capability of domestic heat pumps to provide dynamic frequency response to an electric power sys...
To keep the real-time balance between electricity supply and demand, i.e. to guarantee the grid freq...
The role of ancillary services related to the frequency control have become increasingly important i...
Over the past few years, there has been a marked increase in the output from wind and solar generati...
This paper investigates the model of aggregated heat pumps as a source of the flexible load in Great...
This paper investigates the model of aggregated heat pumps as a source of the flexible load in Great...
AbstractThis paper presents a dynamic frequency regulation strategy which uses residential thermosta...
With large-scale plans to integrate renewable generation driven mainly by state-level renewable port...
Large groups of electrical loads can be controlled as a single entity to reduce their aggregate powe...
Motivated in part by the expanded use of renewable power generation, which are often non-dispatchabl...
International audienceWe study the demand-response potential from large numbers of appliances which ...
This paper proposes a control strategy for managing an aggregate of commercial buildings equipped wi...
Frequency stability in electricity networks is essential to the maintenance of supply quality and se...
Power generation from the renewable energy sources is usually intermittent and uncontrollable which ...
As a result of the increasing integration of Renewable Energy Source (RES), maintenance of the balan...
The capability of domestic heat pumps to provide dynamic frequency response to an electric power sys...
To keep the real-time balance between electricity supply and demand, i.e. to guarantee the grid freq...
The role of ancillary services related to the frequency control have become increasingly important i...
Over the past few years, there has been a marked increase in the output from wind and solar generati...
This paper investigates the model of aggregated heat pumps as a source of the flexible load in Great...
This paper investigates the model of aggregated heat pumps as a source of the flexible load in Great...
AbstractThis paper presents a dynamic frequency regulation strategy which uses residential thermosta...
With large-scale plans to integrate renewable generation driven mainly by state-level renewable port...
Large groups of electrical loads can be controlled as a single entity to reduce their aggregate powe...
Motivated in part by the expanded use of renewable power generation, which are often non-dispatchabl...
International audienceWe study the demand-response potential from large numbers of appliances which ...
This paper proposes a control strategy for managing an aggregate of commercial buildings equipped wi...
Frequency stability in electricity networks is essential to the maintenance of supply quality and se...