Affiliation:
1. Applied Electronics Research Team (APERT), University of the Basque Country (UPV/EHU), 48013 Bilbao, Spain
2. Tecnalia, Basque Research and Technology Alliance (BRTA), Parque Tecnológico de Bizkaia Astondo Bidea, 48160 Derio, Spain
Abstract
Unmanned underwater vehicles (UUVs) are key technologies to conduct preventive inspection and maintenance tasks in offshore renewable energy plants. Making such vehicles autonomous would lead to benefits such as improved availability, cost reduction and carbon emission minimization. However, some technological aspects, including the powering of these devices, remain with a long way to go. In this context, underwater wireless power transfer (UWPT) solutions have potential to overcome UUV powering drawbacks. Considering the relevance of this topic for offshore renewable plants, this work aims to provide a comprehensive summary of the state of the art regarding UPWT technologies. A technology intelligence study is conducted by means of a bibliographical survey. Regarding underwater wireless power transfer, the main methods are reviewed, and it is concluded that inductive wireless power transfer (IWPT) technologies have the most potential. These inductive systems are described, and their challenges in underwater environments are presented. A review of the underwater IWPT experiments and applications is conducted, and innovative solutions are listed. Achieving efficient and reliable UWPT technologies is not trivial, but significant progress is identified. Generally, the latest solutions exhibit efficiencies between 88% and 93% in laboratory settings, with power ratings reaching up to 1–3 kW. Based on the assessment, a power transfer within the range of 1 kW appears to be feasible and may be sufficient to operate small UUVs. However, work-class UUVs require at least a tenfold power increase. Thus, although UPWT has advanced significantly, further research is required to industrially establish these technologies.
Funder
Government of the Basque Country
Programa Investigo
Reference254 articles.
1. International Energy Agency (IEA) (2024, April 08). Ocean Power Generation in the Net Zero Scenario, 2000–2030. Available online: https://www.iea.org/data-and-statistics/charts/ocean-power-generation-in-the-net-zero-scenario-2000-2030.
2. International Energy Agency (IEA) (2024, April 08). Global Energy and Climate Model. Available online: https://www.iea.org/reports/global-energy-and-climate-model.
3. Global Offshore Wind Scenario: A Review;Hote;ECS Trans.,2022
4. Reliability of offshore wind turbine support structures: A state-of-the-art review;Wang;Renew. Sustain. Energy Rev.,2022
5. Future material requirements for global sustainable offshore wind energy development;Li;Renew. Sustain. Energy Rev.,2022