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首页> 外文期刊>Electric Power Applications, IET >SSC strategy for SRG to achieve maximum power with minimum current ripple in battery charging
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SSC strategy for SRG to achieve maximum power with minimum current ripple in battery charging

机译:SRG的SSC策略可在电池充电中以最小的电流纹波实现最大功率

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摘要

Selection of electrical machine is a key issue in electrical and hybrid electrical vehicles (HEVs and EVs). As far as HEVs and EVs are concerned, mechanical ruggedness of electrical machine is of utmost importance. For these reasons, the application of switched reluctance (SR) machine in EVs and HEVs is a viable option. In this study, an SR generator (SRG) has been utilised to work as a battery charger in EVs. The current ripple of the SRG is the greatest issue when it works as a battery charger. Therefore, a power converter and a smart search control (SSC) approach are proposed in this study to decrease the current ripple when the output power has a maximum quantity. During the system operation, the SSC method determines the value of excitation angle, turn-on and turn-off angles for each phase of SRG. The simulation and experimental results demonstrate the eligibility of the SSC system and power converter to obtain the acceptable charging current in maximum generated power during battery charging.
机译:电机的选择是电动和混合电动车辆(HEV和EV)的关键问题。就混合动力汽车和电动汽车而言,电机的机械坚固性至关重要。由于这些原因,在电动汽车和混合动力汽车中应用开关磁阻(SR)机是一个可行的选择。在这项研究中,SR发电机(SRG)已被用作电动汽车的电池充电器。当SRG用作电池充电器时,它的电流纹波是最大的问题。因此,本研究提出了一种功率转换器和智能搜索控制(SSC)方法,以在输出功率最大时减小电流纹波。在系统运行期间,SSC方法确定SRG每一相的激励角,开启和关闭角的值。仿真和实验结果表明,在电池充电期间,SSC系统和功率转换器有资格获得最大发电功率中的可接受充电电流。

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