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An IPT System with Constant Current and Constant Voltage Output Features for EV Charging

机译:具有恒流和恒压输出功能的IPT系统,用于EV充电

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Inductive power transfer (IPT) system for electric vehicle battery charging has many advantages over the traditional plug-in system. EV battery can be regarded as a wide range load according to the charging profile. The charging process requires constant current (CC) stage and constant voltage (CV) stage. The charging profile for IPT system is influenced by inductively coupled transformer, compensation structure and operating frequency. This paper proposes an IPT topology which naturally obtains CC and CV output functions simultaneously without increasing the complexity of control system. The system switches between the two charging modes in succession along with the change of load condition. It operates under the CC mode when the load resistance is small, which corresponds to the beginning of battery charging state. With the increase of load resistance, it switches to CV mode at a load turning point after which the battery is under the state of cutoff voltage. As the system is completely compensated, zero phase angle input is achieved during the entire charging process, which realizes soft switching for the entire load range. A fixed frequency control method is used to adjust the output accurately. The experimental IPT system is established to verify the theoretical analysis.
机译:电动车辆电池充电的电感电力传输(IPT)系统对传统的插入系统具有许多优点。根据充电型材,EV电池可被视为宽范围的负载。充电过程需要恒定电流(CC)级和恒定电压(CV)阶段。 IPT系统的充电轮廓受电感耦合变压器,补偿结构和工作频率的影响。本文提出了一种IPT拓扑,其自然地获得CC和CV输出函数同时在不增加控制系统的复杂性的情况下同时获得CC和CV输出功能。系统连续地在两个充电模式之间切换,以及负载条件的变化。当负载电阻小时,它在CC模式下运行,这对应于电池充电状态的开始。随着负载电阻的增加,它在负载转弯点处切换到CV模式,之后电池位于截止电压的状态下。由于系统完全补偿,在整个充电过程中实现零相角输入,这实现了整个负载范围的软切换。固定频率控制方法用于精确调节输出。建立实验性IPT系统以验证理论分析。

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