Energies, Vol. 19, Pages 80: A Genetic Algorithm-Based Home Energy Management Framework for Optimizing User-Dependent Flexible Loads
Energies, Vol. 19, Pages 80: A Genetic Algorithm-Based Home Energy Management Framework for Optimizing User-Dependent Flexible Loads
Energies doi: 10.3390/en19010080
Authors:
João Tabanêz Patrício
Francisco Januário Silva
Rui Amaral Lopes
Nuno Amaro
João Martins
This paper presents a Genetic Algorithm-based Home Energy Management System designed to exploit the energy flexibility of user-dependent loads by identifying and recommending optimal operating schedules that minimize electricity costs. To determine the most advantageous 15 min activation slot for the following day for each load, the algorithm uses as input the forecasted consumption profile of non-optimizable loads and photovoltaic generation, both obtained through an LSTM-based model, along with the contracted power, applicable tariffs, and the load profiles of the selected appliances. Unlike previous approaches, the proposed framework allows users to select which loads to optimize and define specific operational constraints. Additionally, a user-friendly interface was developed to facilitate seamless interaction between the user and the system. To validate the proposed framework, a case study was conducted on a residential household with four occupants located in Portugal, considering user-dependent flexible loads such as a washing machine, tumble dryer, and dishwasher. The results demonstrated that the developed system operated effectively, reducing electricity costs by approximately 9% compared to a scenario without the proposed solution.
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