Analysis of a compact and efficient DDQ pad integrated to the LCC compensation topology for IPT

Analysis of a compact and efficient DDQ pad integrated to the LCC compensation topology for IPT
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分析集成到 IPT LCC 补偿拓扑中的紧凑高效 DDQ 焊盘

DOI:
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发表时间:
2018
期刊:
The Power Electronics, Drive Systems & Technologies Conference
影响因子:
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通讯作者:
M. Mirsalim
M. Mirsalim
中科院分区:
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文献类型:
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作者:
Navid Rasekh;M. Mirsalim

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无线电力传输等新兴技术是我们生活方式中一项令人印象深刻的任务。它可用于手机充电、家用电器、工业工具和汽车工业等电子设备中,作为电动汽车充电的感应电能传输。 DD pad是一种新颖的线圈结构,比圆形pad等其他形式的结构具有更好的性能。在固定和动态充电无线功率传输中,焊盘未对准是一个主要问题。工程师们努力设计一种高效且紧凑的垫来克服这个问题。 DDQ pad是处理错位位置的有效方法。为了在利用 LCC 补偿方法的同时压缩系统,将补偿线圈集成到主线圈中。本文利用 3D 有限元法 (FEM) 工具 ANSYS MAXWELL 分析了补偿线圈对主线圈以及正交线圈的影响。下面计算了正交线圈和补偿线圈之间影响较小的优化线圈尺寸。
Newcomer technology as wireless power transfer is an impressive task in our lifestyle. It is utilized in electronic devices such as cell phone charging, electronic home appliances, industrial tools and the automotive industry as inductive power transfer for charging electric vehicles. DD pad is a novel coil structure that has a better performance than the other forms of structure such as circular pad. In the stationary and dynamic charging wireless power transfer, misalignment of the pads is a major problem. Engineers have made efforts to design an efficient and compact pad to overcome this problem. DDQ pad is an effective way to handle the misalignment positions. To compress the system while utilizing the LCC compensation method, the compensation coil is integrated into the main coils. In this paper, the effect of the compensation coil on the main coils and also on the quadrature coil is analyzed with 3D Finite element method (FEM) tool ANSYS MAXWELL. In the following, the optimized size of coils to have inconsiderable effect between the quadrature coil and compensated coil is calculated.