A Decision Support Approach to Provide Sustainable Solutions to the Consumer, by Using Electrical Appliances

Author:

Matias João,Santos Ricardo,Abreu Antonio

Abstract

The diversity of energy efficiency appliances existent on the market, with all its different issues, contributes to the existence of several tradeoffs (e.g., energy and water consumption vs. initial investment), which make the consumer’s choices in the market difficult. This becomes even more relevant, by knowing that nowadays a consumer tries to get a solution from the market, with a good compromise between the economic, social and environmental dimensions, and according to its priorities and specific needs, which can be different from other consumers. By adopting a multicriteria approach, combined with an optimization technique, based on evolutionary algorithms (EA), it will be possible to provide a set of sustainable solutions from the market to the consumer, that respects the compromise referred before. In this work, it will be presented an approach to support a decision-agent (DA) (consumer), by performing a set of sustainable choices based on electrical appliances, from the market and suitable to its needs. The method will be applied to a case study, to demonstrate its application. Regarding the obtained solutions, several savings are achieved (electrical and water consumption, CO2 emissions) by taking into account the consumer’s relative importance, regarding each dimension considered.

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference28 articles.

1. Socio-Economic Development and Primary Energy Sources Substitution Towards Decarbonization

2. Climate Change 2014: Mitigation of Climate Change Summary for Policymakers and Technical Summar,2015

3. Energy Efficiency 2017—Market Reports Series,2017

4. 2020 Climate & Energy Package https://ec.europa.eu/clima/policies/strategies/2020_en

5. Climate and Energy Framework https://www.consilium.europa.eu/en/policies/climate-change/2030-climate-and-energy-framework/

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