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FPGA based design and implementation of power conditioning unit for fuel cell powered vehicle using adaptive vector reference control method

机译:基于FPGA使用自适应矢量参考控制方法的燃料电池动力车辆动力调节单元的设计与实现

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The output of renewable energy is the power of low voltage and high current rated designs. Due to the output voltage being too low it does not meet the required maximum voltage load requirements. Therefore, in order to meet the high voltage load, the required limit of the power converter (DC-DC) is used to increase the voltage to the maximum. . The DC output voltage from a renewable energy source is given as input to a DC-DC converter, and the output generated from the converter is used to drive a load. KY boost converter is one of the recently developed DC-DC converters to reduce output voltage ripple. It is suitable for operation in equipment to below low ripple conditions. The disadvantage of this converter is that the boost voltage is a very low design parameter. To obtain the desired boosted voltage, and also to reduce the output voltage ripple, an optimized algorithm is used. Compared with the existing Drosophila optimization technology, the proposed Adaptive Vector Reference Control (AVRC) Method has higher convergence characteristics and lower output ripple. The simulation results are verified by MAT LAB simulation with hardware results. The hardware is developed using the Xilinx FPGAs SPARTAN 6A controller, which simplifies the XC3S500E development board prototype in addition to providing additional flexibility for further improvements. The results clearly show improved performance and validate the model. (c) 2020 Elsevier B.V. All rights reserved.
机译:可再生能源的输出是低电压和高电流额定设计的功率。由于输出电压太低,它不符合所需的最大电压负载要求。因此,为了满足高电压负载,功率转换器(DC-DC)的所需限制用于将电压增加到最大值。 。来自可再生能源的直流输出电压作为DC-DC转换器的输入给出,并且从转换器产生的输出用于驱动负载。 KY Boost转换器是最近开发的DC-DC转换器之一,以减少输出电压纹波。它适用于设备的操作,低于低纹波条件。该转换器的缺点是升压电压是非常低的设计参数。为了获得所需的升压电压,并且还减少输出电压纹波,使用优化的算法。与现有的果蝇优化技术相比,所提出的自适应矢量参考控制(AVRC)方法具有较高的收敛特性和较低的输出纹波。仿真结果由MAT实验室模拟验证了硬件结果。使用Xilinx FPGAS Spartan 6A控制器开发了硬件,除了提供额外的灵活性以进一步改进,简化了XC3S500E开发板原型。结果清楚地显示了改进的性能并验证模型。 (c)2020 Elsevier B.v.保留所有权利。

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