The use of machine learning techniques has been proven to be a viable solution for smart home energy management. These techniques autonomously control heating and domestic hot water systems, which are the most relevant loads in a dwelling, helping consumers to reduce energy consumption and also improving their comfort. Moreover, the number of houses equipped with renewable energy resources is increasing, and this is a key element for energy usage optimization, where coordinating loads and production can bring additional savings and reduce peak loads. In this regard, we propose the development of a deep reinforcement learning (DRL) algorithm for indoor and domestic hot water temperature control, aiming to reduce energy consumption by optimiz...
A smart home with battery energy storage can take part in the demand response program. With proper e...
Behind-the-meter distributed energy resources (DERs), including building solar photovoltaic (PV) tec...
Behind-the-meter distributed energy resources (DERs), including building solar photovoltaic (PV) tec...
The model-free Deep Reinforcement Learning (DRL) environment developed for this work attempts to min...
Energy consumption for hot water production is a major draw in high efficiency buildings. Optimizing...
Demand side management at district scale plays a crucial role in the energy transition process, bein...
Domestic hot water accounts for approximately 15% of the total residential energy consumption in Eur...
In this work, Deep Reinforcement Learning (DRL) is implemented to control the supply water temperatu...
In this study, a controller based on deep reinforcement learning was tested for a residential buildi...
Modern solutions for residential energy management systems control are emerging and helping to impro...
Electric water heaters represent 14% of the electricity consumption in residential buildings. An ave...
This study delves into the application of deep reinforcement learning (DRL) frameworks for optimizin...
Abstract Domestic hot water accounts for approximately 15% of the total residential energy consumpt...
A smart home with battery energy storage can take part in the demand response program. With proper e...
A smart home with battery energy storage can take part in the demand response program. With proper e...
A smart home with battery energy storage can take part in the demand response program. With proper e...
Behind-the-meter distributed energy resources (DERs), including building solar photovoltaic (PV) tec...
Behind-the-meter distributed energy resources (DERs), including building solar photovoltaic (PV) tec...
The model-free Deep Reinforcement Learning (DRL) environment developed for this work attempts to min...
Energy consumption for hot water production is a major draw in high efficiency buildings. Optimizing...
Demand side management at district scale plays a crucial role in the energy transition process, bein...
Domestic hot water accounts for approximately 15% of the total residential energy consumption in Eur...
In this work, Deep Reinforcement Learning (DRL) is implemented to control the supply water temperatu...
In this study, a controller based on deep reinforcement learning was tested for a residential buildi...
Modern solutions for residential energy management systems control are emerging and helping to impro...
Electric water heaters represent 14% of the electricity consumption in residential buildings. An ave...
This study delves into the application of deep reinforcement learning (DRL) frameworks for optimizin...
Abstract Domestic hot water accounts for approximately 15% of the total residential energy consumpt...
A smart home with battery energy storage can take part in the demand response program. With proper e...
A smart home with battery energy storage can take part in the demand response program. With proper e...
A smart home with battery energy storage can take part in the demand response program. With proper e...
Behind-the-meter distributed energy resources (DERs), including building solar photovoltaic (PV) tec...
Behind-the-meter distributed energy resources (DERs), including building solar photovoltaic (PV) tec...