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Design and development of a three-phase off-board electric vehicle charger prototype for power grid voltage regulation

机译:用于电网电压调节的三相非车载式电动汽车充电器原型的设计和开发

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This paper discussed the design and development of a 2 kVA three-phase off-board electric vehicle charger prototype with a practical voltage control, where the procedures of the experimental construction were comprehensively presented. For the experimental setup, the effectiveness of the interface circuits and auxiliary power supply units were individually validated. Moreover, the electric vehicle charger utilized a Digital Signal Processor to employ the control strategies of vehicle charging and power grid voltage regulation. The proposed control can simultaneously charge the battery of electric vehicle, maintain a constant DC-link voltage and also provide the appropriate reactive power compensation to regulate the grid voltage to the desired level. While complying with the power quality standards, the experimental results had validated the practicality of the integrated electric vehicle charger and the control performance. The charger prototype had effectively regulated the grid voltage to the pre-charge voltage of 0.96 per unit while maintaining the DC-link voltage at 150 V during various charging currents of up to 5 A. (c) 2017 Elsevier Ltd. All rights reserved.
机译:本文讨论了具有实用电压控制功能的2 kVA三相车载式三相电动汽车充电器原型的设计和开发,并全面介绍了实验过程。对于实验设置,分别验证了接口电路和辅助电源单元的有效性。此外,电动汽车充电器利用数字信号处理器来采用汽车充电和电网电压调节的控制策略。所提出的控制可以同时给电动汽车的电池充电,保持恒定的直流母线电压,还可以提供适当的无功功率补偿以将电网电压调节到所需水平。在符合电能质量标准的同时,实验结果验证了集成式电动汽车充电器的实用性和控制性能。充电器原型已有效地将电网电压调节为每单位0.96的预充电电压,同时在各种最高5 A的充电电流下将直流母线电压保持在150V。(c)2017 Elsevier Ltd.保留所有权利。

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