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Review of Wireless Charging Systems for Autonomous Underwater Vehicles

机译:自主水下车辆无线充电系统综述

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Autonomous underwater vehicles (AUVs) are increasingly used for undersea exploration. The endurance of AUVs is limited by the onboard energy storage among which the battery systems dominate. Various underwater recharging methods are employed to increase the AUV range and autonomy. Currently, contact-based underwater recharging utilizes the wet-mate connector technology that requires a high-precision AUV docking, and is prone to electrical safety issues. To overcome these limitations, underwater wireless recharging techniques for AUVs have been explored in recent years. Wireless charging offers a safe and reliable method for autonomous power transfer between a charging station and a vehicle. This article reviews the state-of-the-art inductive wireless power transfer (IWPT) solutions for underwater applications and discusses the engineering challenges of the IWPT system design. Underwater environmental factors, such as seawater conductivity, temperature, pressure, water currents, and biofouling phenomenon, impose constraints on IWPT systems. A comprehensive review of AUV energy storage systems, docking methods, IWPT system control methods, and compensation networks is presented in this article. Based on the main operational and constructional principles, the AUV IWPT systems are categorized as loosely coupled transformers and resonant IWPT systems. Each of the categories is illustrated through their main design principles and implementations reported in the literature so far. Technical challenges, such as integration of IWPT system into an AUV hull, interoperability, alignment and retention issues, docking station sinking and stability, the design of pressure-tolerant charging electronics, data transfer, and the battery operation in the underwater environment are discussed in this article too. The article is concluded with the best practice overview of designing an IWPT system for AUVs.
机译:自主水下车辆(AUV)越来越多地用于海底勘探。 AUV的耐久性受到电池系统支配的船上能量存储的限制。采用各种水下充电方法来增加AUV范围和自主权。目前,基于接触的水下充电利用了需要高精度AUV对接的湿法连接器技术,并且容易发生电气安全问题。为了克服这些限制,近年来探讨了AUV的水下无线充电技术。无线充电提供安全可靠的充电站和车辆之间的自主动力传输方法。本文介绍了用于水下应用的最先进的电感无线电力传输(IWPT)解决方案,并讨论了IWPT系统设计的工程挑战。水下环境因素,如海水电导率,温度,压力,水流和生物污垢现象,对IWPT系统施加限制。本文介绍了对AUV能量存储系统,对接方法,IWPT系统控制方法和补偿网络的全面审查。基于主要操作和结构原理,AUV IWPT系统被分类为松散耦合的变压器和谐振IWPT系统。每个类别都是通过其主要设计原则和在文献中报告的主要设计原则和实施来说明。技术挑战,如将IWPT系统集成到AUV船体,互操作性,对准和保留问题,对接站下沉和稳定性,压力耐充电电子设备的设计,数据传输和水下环境中的电池操作这篇文章也。该文章是以设计AUV设计IWPT系统的最佳实践概述。

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