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Time-Dependent Multi-Physics Analysis of Inductive Power Transfer Systems

机译:电感电力传输系统的时间依赖多物理分析

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A multi-physics time-dependent model for design and analysis of inductive electric vehicle (EV) charging systems is presented. The model combines time-harmonic electromagnetic, time-dependent or steady-state thermal and fluid models that are all solved together using Finite Element Analysis (FEA). Detailed coupled formulations for each physics and their corresponding boundary conditions are presented. The multiphysics model includes the fluid dynamics model that incorporates the air convection process and therefore results in more accurate thermal performance analysis. COMSOL Multiphysics software is used for performing the steady-state and time-domain FEA based multi-physics simulations on a case study inductive EV charging system. The results show that using the multi-physics model the behavior of the IPT system can be effectively analyzed. The multiphysics model is specifically helpful for choosing the proper cooling system and thermal insulation between the charging pad and the vehicle.
机译:提出了一种多物理依赖于电感电动车辆(EV)充电系统的设计和分析模型。该模型结合了时谐波电磁,时间依赖性或稳态的热和流体模型,这些热量和流体模型在一起使用有限元分析(FEA)解决。提出了每个物理学的详细耦合配方及其相应的边界条件。多麦体验模型包括流体动力学模型,其包含空气对流过程,因此导致更准确的热性能分析。 COMSOL MultiphySics软件用于在案例研究电感EV充电系统上执行基于稳态和时域FEA的多物理模拟。结果表明,使用多物理模型可以有效地分析IPT系统的行为。多体型模型专门有助于选择充电垫和车辆之间的适当冷却系统和隔热。

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