首页> 外文会议>ECCE 2013 >Optimal Design Method to Achieve Both Good Robustness and Efficiency in Loosely-coupled Wireless Charging System Employing Series-Parallel Resonant Tank with Asymmetrical Magnetic Coupler
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Optimal Design Method to Achieve Both Good Robustness and Efficiency in Loosely-coupled Wireless Charging System Employing Series-Parallel Resonant Tank with Asymmetrical Magnetic Coupler

机译:采用不对称磁耦合器的串联谐振箱实现松散耦合无线充电系统良好鲁棒性和效率的最佳设计方法

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In wireless charging applications, it is often desirable to minimize the weight and size of the receiver coil (Rx) while the transmitter coil (Tx) may be larger so as to provide a stronger and/or more uniform magnetic field and to accommodate the magnetizing current flowing in the Tx coil. Furthermore, in many applications, the receiver coil geometry is often limited by the dimensions of the movable battery-powered system, whereas the transmitter coil geometry can be larger. Consequently, the need for asymmetrical coupler implementation is increasing. In this paper, detailed analysis of series-parallel (SP) resonant topology of asymmetrically- implemented resonant tank (ART) type is performed in the frequency domain to explain various trade-offs and to provide detailed design criteria. In the analysis, general expressions for voltage gain and current gain are used to derive design-oriented equations that ensure various desirable characteristics in the frequency domain. These equations can be used for optimally designing SP resonant tanks of ART type as well as symmetrically-implemented resonant tank (SRT) type. In this paper, it is shown that using the presented design equations to meet the design criteria allows achieving high robustness in power delivery characteristics under coupling (k) variation with only a small increase in circulating current in a coupler.
机译:在无线充电应用中,通常希望最小化接收器线圈(Rx)的重量和尺寸,而发射器线圈(Tx)可以更大,以便提供更强和/或更均匀的磁场并且适应磁化电流在TX线圈中流动。此外,在许多应用中,接收器线圈几何形状通常受到可移动电池供电系统的尺寸的限制,而发射器线圈几何形状可以更大。因此,对不对称耦合器实现的需求正在增加。在本文中,在频域中进行了对串联(SP)串联(SP)谐振块(SP)谐振拓扑的详细分析,以解释各种权衡并提供详细的设计标准。在分析中,用于电压增益和电流增益的一般表达式用于导出面向设计的方程,以确保频域中的各种所需特性。这些等式可用于最佳地设计艺术类型的SP共振罐以及对称实施的谐振罐(SRT)类型。在本文中,示出了使用所提出的设计方程,以满足设计标准,允许在耦合(k)变化下的电力输送特性方面实现高稳健性,仅在耦合器中循环电流的小幅增加。

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