Ontology Modeling for Decentralized Household Energy Systems
Jiantao Wu, Fabrizio Orlandi, Tarek AlSkaif, Declan O'Sullivan, and, Soumyabrata Dev

TL;DR
This paper introduces an ontology-based approach to enhance data integration and contextual understanding in decentralized household energy systems, enabling better data reuse and inclusion of external information like weather data.
Contribution
It proposes a novel ontology modeling framework for decentralized household energy data, improving data interoperability and contextual enrichment across the web.
Findings
Ontology model extends data scope for each device.
Enables retrieval of external relevant data like weather.
Improves data reusability and system understanding.
Abstract
In a decentralized household energy system consisting of various devices such as washing machines, heat pumps, and solar panels, understanding the electric energy consumption and production data at the granularity of the device helps end-users be closer to the system and further achieve the sustainability of energy use. However, many datasets in this area are isolated from other domains with records of only energy-related data. This may raise a loss of information (e.g. weather) that is relevant to the energy use of each device. A noticeable disadvantage is that many of those datasets have to be used in computational modeling approaches such as machine learning models, which are vulnerable to the data feed, to advance the understanding of energy consumption and production. Although such computational methods have achieved a high benchmark merely through a local view of datasets, the…
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Taxonomy
TopicsSemantic Web and Ontologies · Service-Oriented Architecture and Web Services · Smart Grid Energy Management
