多目的混合型优化线圈设计可提高效率,改善电压增益,并为感应功率传输提供紧性
Kripalakshmi Thiagarajan1, T Deepa2, Prabhakar Mahalingam3
1School of Electrical Engineering, Vellore Institute of Technology, Chennai, India.
这项研究优化了轻型电动汽车的感应功率传输 (IPT) 线圈,实现了94%的功率传输效率. 紧的设计提高了电动汽车的无线充电性能,为实现碳中和目标做出贡献.
科学领域:
- 电气工程
- 可持续能源系统
- 电磁学
背景情况:
- 全球人口增长和车辆使用需要可持续的交通解决方案,如电动汽车.
- 有效的无线充电系统对于轻型电动汽车的广泛采用至关重要.
- 导电传输 (IPT) 是电动汽车无线充电的关键技术.
研究的目的:
- 为了测试48V轻型EV (LEV) IPT原型的优化线圈设计的性能.
- 优化线圈设计以实现紧性和高功率传输效率.
- 在可变频率操作下验证优化的IPT系统的性能.
主要方法:
- 使用混合多目标优化算法,结合泰勒系列调整和Dove Swarm (DSO) 优化.
- 为IPT应用设计和模拟优化的线圈.
- 进行硬件测试以验证IPT原型的模拟结果.
主要成果:
- 实现了94%的功率传输效率 (PTE),电压增益为0.93和电流增益为0.9.
- 在初级和二级线圈之间观察到约0.7V (1.5%) 的最小电压下降.
- 证明了强的合和最小的电压损失,经过变频操作的验证.
结论:
- 针对IPT系统的优化紧线圈设计提供了高功率传输效率和更小的尺寸.
- 开发的IPT系统非常强大,非常适合轻型电动汽车的无线充电应用.
- 这项研究有助于通过高效的无线充电解决方案推进可持续运输.
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