Performance enhancement of actively controlled hybrid DC microgrid with pulsed load

M. Farhadi, O. Mohammed
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引用次数: 13

Abstract

In this paper, a new energy control scheme is proposed for actively controlled hybrid dc microgrid to reduce the adverse impact of pulsed power loads. The proposed energy control is an adaptive current-voltage control (ACVC) scheme based on the moving average measurement technique and an adaptive proportional compensator. Unlike conventional energy control methods, the proposed ACVC approach has the advantages of controlling both voltage and current of the system while it keep the output current of the power converter at a relatively constant value. For this study, a laboratory scale hybrid dc microgrid is developed to evaluate the performance of the ACVC strategy and to compare its performance with the other conventional energy control methods. Using experimental test results, it is shown that the proposed strategy highly improves the dynamic performance of the hybrid dc microgrid. Although the ACVC technique causes slightly more bus voltage variation, it effectively eliminates the high current and power pulsation of the power converters. The experimental test results for different pulse duty ratios demonstrated a significant improvement achieved by the developed ACVC scheme in enhancing the system efficiency, reducing the ac grid voltage drop and the frequency fluctuations.
脉冲负载下主动控制混合直流微电网的性能增强
本文提出了一种新的主动控制混合直流微电网的能量控制方案,以减少脉冲功率负载的不利影响。提出的能量控制是一种基于移动平均测量技术和自适应比例补偿器的自适应电流电压控制(ACVC)方案。与传统的能量控制方法不同,所提出的ACVC方法具有控制系统电压和电流的优点,同时使功率变换器的输出电流保持在一个相对恒定的值。在本研究中,开发了一个实验室规模的混合直流微电网,以评估ACVC策略的性能,并将其与其他常规能量控制方法的性能进行比较。实验测试结果表明,该策略能有效地改善混合直流微电网的动态性能。虽然ACVC技术引起的母线电压变化略大,但它有效地消除了功率变换器的大电流和功率脉动。不同脉冲占空比下的实验测试结果表明,所提出的ACVC方案在提高系统效率、减小交流电网电压降和频率波动方面有显著改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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