无线电源传输
无线
工程类
电气工程
汽车工程
功率(物理)
电信
物理
量子力学
作者
Ankur Yadav,Tushar Kanti Bera
标识
DOI:10.1504/ijvd.2025.148152
摘要
This research examines the impact of magnetic materials on wireless power transfer (WPT) systems for electric vehicles (EVs), focusing on 3D coil and coupler design using Ansys Maxwell. It explores how material choice influences WPT performance and reliability, analyzing parameters like coupling (k), mutual (M), and self-inductance (L) alongside magnetic flux density (B), field strength (H), energy, and thermal effects across air gaps (40-200 mm). Matlab verifies output voltage, current, power, and power transfer efficiency (PTE). Results show that ferrite achieves a peak PTE of 94.3% at an 80 mm gap, with a 30.4 kg weight and 400 × 400 × 20 mm dimensions, while alloy steel yields 73.9% PTE at 50.67 kg. The study aids in selecting materials to optimize PTE, reduce losses, ensure safety, and improve reliability, advancing WPT technology for efficient EV charging infrastructure.
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