Intelligent Remote Control for Heat Pumps

Project full name: 
Intelligent Remote Control for Heat Pumps
The project will develop and demonstrate an intelligent remote control system for individual heating pumps. enabling the balance responsible party to plan consumption and deliver regulatory power. internal balancing and possibly primary reserves.

Intelligent home

Project full name: 
Intelligent home
The aim is through information to customers to achieve energy saving behavior change by making visible the biggest energy consumers. The project also include the management of individual components based on defined conditions

Integration and management of wind power in the Danish electricity system

Project full name: 
Integration and management of wind power in the Danish electricity system
The project establishes a new model of the Danish electricity system in the form of two buses (east and west Denmark). to which new models of load and production units are connected in the form of centralised and local power plants. onshore and offshore wind turbines and grid connections to Norway. Sweden and Germany

Information and education of the future power consumer

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Information and education of the future power consumer
This project focuses on customer behaviour and what actions are needed to inform the customer. so that he actually changes his behaviour. The project will result in brochures. a new energy consultancy service and education of teenagers following a youth education programmes.

Increased energy supply flexibility and efficiency by using decentralised heat pumps in CHP stations

Project full name: 
Increased energy supply flexibility and efficiency by using decentralised heat pumps in CHP stations
The project is a continuation of the research results from EFP 2003 (j.no.: 1373/03-0007) and demonstrates the newly developed heat pump technology in full scale at two decentralised CHP stations. Furthermore. a number of ideas concerning the integration of compression heat pumps in the energy system will be tested via simulation models and also in practice. Finally. heat pumps will be investigated in connection with reduction of grid loss in district heating (20-40%) via ultra-cold district heating.

INCAP

Project full name: 
Inducing consumer adoption of automated reaction technology for dynamic power pricing tariffs
Can consumers be induced to adopt varying tariffs and automatic response technology for common household appliances at costs that make this socially attractive? The project implements a large scale field experiment using an automatic response application for a common appliance (e.g. refrigerators).

IMPROSUME

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The Impact of Prosumers in a Smart Grid based Energy Market
IMPROSUME will establish a better understanding of the prosumer’s role in the future power market supported by a Smart Grid and associated technologies. The project will address stimuli that are likely to motion consumers to take an active role in the market also as suppliers.

IHSMAG

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Integrating households in the smart grid
IHSMAG studies the integration of households in the smart grid and develops design recommendations.

Heat Pumps as an active tool in the energy supply system

Project full name: 
Heat Pumps as an active tool in the energy supply system
Heat pumps will provide flexibility due to the possibility to either increase. decrease or interrupt the power consumption. The project will deal with the ability of heat pumps to operate in so-called Virtual Power Plants. to deliver regulating power and to react on spot-market electricity prices.

Green eMotion

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Green eMotion
Green eMotion will connect ongoing regional and national electromobility initiatives leveraging on the results and comparing the different technology approaches to ensure the best solutions prevail for the European market. A virtual marketplace will be created to enable the different actors to interact and to allow for new highvalue transportation services as well as EV-user convenience in billing (EU Clearing House).

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