Recent Advances in Underwater Energy Systems and Wireless Power Transfer for Autonomous Underwater Vehicle Charging

Последние достижения в подводных энергетических системах и беспроводной передаче энергии для зарядки автономных подводных аппаратов
Ramamurthi Sekar, Narayanamoorthi Rajamanickam, Hassan Z. Al Al Garni, Jamal Aldahmashi, Ahmed Emara
2026-01-29

autonomous underwater vehiclesbiofoulingmagnetic couplerspower converter topologiesunderwater wireless power transfer
In recent years, the need for autonomous underwater vehicles (AUVs) for offshore infrastructure maintenance and oceanographic surveillance has been prominently increasing. Continuous monitoring and surveillance are the essential tasks the AUVs are designed to perform. However, the long endurance of the AUV is a challenging task due to the limited size and capacity of the onboard battery. The conventional way of recharging using battery swapping or a wet mate connector limits the autonomy of the AUV. Underwater wireless power transfer (UWPT) technology seems to be a suitable alternative for overcoming the above limitations, which can provide autonomy to the AUV charging process. However, designing a UWPT system has its limitations in the marine environment and requires enough engineering studies of the different modules of the system. Different investigations are proposed in the literature on the UWPT system, both at the system level and circuit level. This article provides an overview of the latest advancements in the UWPT system and discusses marine power sources, power converter topologies, compensation topologies, and different types of magnetic couplers. The article also discusses the engineering challenges in designing a UWPT system, including eddy current loss and biofouling. The article also summarizes current research trends, potential challenges in UWPT, and future technological developments from prototypes to practical products and offers recommendations for further progress.
1
Improving UWPT technology could support longer-endurance AUV operations for offshore infrastructure maintenance and oceanographic surveillance.
2
The article summarizes current research trends, remaining challenges, and pathways for advancing UWPT technology from prototypes toward practical products.
3
The review synthesizes recent advances in marine power sources, power converter topologies, compensation networks, and magnetic couplers for UWPT systems.
4
UWPT deployment in marine environments faces engineering challenges including eddy-current losses and biofouling, requiring dedicated system- and circuit-level design studies.
5
Underwater wireless power transfer is identified as a promising alternative to battery swapping and wet-mate connectors for extending AUV charging autonomy.

underwater wireless power transfer systems for charging autonomous underwater vehicles

system architectures, component technologies, engineering challenges, and advancement pathways for underwater wireless power transfer in marine environments

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2026-01-29
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Ramamurthi Sekar
Narayanamoorthi Rajamanickam
Hassan Z. Al Al Garni
Jamal Aldahmashi
Ahmed Emara
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