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Design and analysis of an underwater inductive coupling power transfer system for autonomous underwater vehicle docking applications

机译:用于水下自动航行器对接应用的水下感应耦合功率传输系统的设计和分析

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We develop a new kind of underwater inductive coupling power transfer (ICPT) system to evaluate wireless power transfer in autonomous underwater vehicle (AUV) docking applications. Parameters that determine the performance of the system are systematically analyzed through mathematical methods. A circuit simulation model and a finite element analysis (FEA) simulation model are developed to study the power losses of the system, including copper loss in coils, semiconductor loss in circuits, and eddy current loss in transmission media. The characteristics of the power losses can provide guidelines to improve the efficiency of ICPT systems. Calculation results and simulation results are validated by relevant experiments of the prototype system. The output power of the prototype system is up to 45 W and the efficiency is up to 0.84. The preliminary results indicate that the efficiency will increase as the transmission power is raised by increasing the input voltage. When the output power reaches 500 W, the efficiency is expected to exceed 0.94. The efficiency can be further improved by choosing proper semiconductors and coils. The analysis methods prove effective in predicting the performance of similar ICPT systems and should be useful in designing new systems.
机译:我们开发了一种新型的水下感应耦合功率传输(ICPT)系统,以评估自动水下航行器(AUV)对接应用中的无线功率传输。通过数学方法,系统地分析了确定系统性能的参数。开发了电路仿真模型和有限元分析(FEA)仿真模型,以研究系统的功率损耗,包括线圈中的铜损耗,电路中的半导体损耗以及传输介质中的涡流损耗。功率损耗的特性可以为提高ICPT系统的效率提供指导。通过原型系统的相关实验验证了计算结果和仿真结果。原型系统的输出功率高达45 W,效率高达0.84。初步结果表明,通过增加输入电压来提高传输功率,效率将会提高。当输出功率达到500 W时,效率有望超过0.94。通过选择合适的半导体和线圈可以进一步提高效率。分析方法被证明可以有效地预测类似ICPT系统的性能,并且在设计新系统时应很有用。

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