Voltage Stabilization of DC-Link in EVs using DAB Converter based on Higher-Order SMC approach

T. Zaman, I. Khan, N. Ullah
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Abstract

The bidirectional dual active bridge (DAB) converters play a vital role in the emerging smart-grid and Electric Vehicles (EVs) applications. The bidirectional converter plays the role of an intermediate converter between the main DC link of EV and the energy storing elements. In this work, a higher order sliding mode controller is derived based on the nonlinear Fourier switching harmonics of the DAB converter. The controller aims to regulate the converter's output voltage at the main DC link irrespective of the external disturbance as a load and variations in the voltage. The derived controller is validated by experimental results using hardware in the loop (HIL) and TI C2000 F28379D Launchpad.
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基于高阶SMC方法的DAB变换器在电动汽车直流链路中的稳压研究
双向双有源电桥(DAB)变换器在新兴的智能电网和电动汽车(ev)应用中发挥着至关重要的作用。双向变换器在电动汽车直流主环节和储能元件之间起着中间变换器的作用。在这项工作中,基于DAB变换器的非线性傅立叶开关谐波,推导了一个高阶滑模控制器。控制器的目的是调节变换器在直流主环节的输出电压,而不考虑外部干扰作为负载和电压的变化。通过硬件在环(HIL)和TI C2000 F28379D发射台的实验结果验证了该控制器的有效性。
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