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文章摘要
双向AC/DC容错变换器模型预测直接功率控制
Model predictive direct power control of bidirectional AC/DC fault-tolerant converter
Received:August 17, 2018  Revised:August 17, 2018
DOI:10.19753/j.issn1001-1390.2019.022.015
中文关键词: 双向交直流变换器  故障容错  两级式结构  模型预测控制  直接功率控制
英文关键词: bidirectional AC/DC converter, fault tolerant, two-stage structure, model predictive control, direct power control
基金项目:国家自然科学基金 (51607159) ;河南省高校科技创新人才支持计划(18HASTIT025);河南省高校青年骨干教师资助计划(2015GGJS-180)
Author NameAffiliationE-mail
Hu Shiyang* College of Electrical and Information Engineering, Hunan University 864462105@qq.com 
Li Jin College of Electrical and Information Engineering, Zhengzhou University of Light Industry 499653451@qq.com 
Jin Nan College of Electrical and Information Engineering, Zhengzhou University of Light Industry jinnan@zzuli.edu.cn 
Liu Guorong College of Electrical and Information Engineering, Hunan University lgr1110 @126.com 
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中文摘要:
      双向交直流变换器的故障容错运行能力可有效提高其可靠性。综合考虑双向变换器直流侧电压调节及变换器容错运行控制,本文提出一种双有源桥(DAB)级联容错三相四开关变换器(FSTP)的两级式结构及其四矢量下的模型预测功率控制策略。当变换器桥臂发生故障时,前级DAB结构可提高直流电压,后级FSTP结构能够保证变换器的可持续容错连续运行。与传统无容错变换器方案相比,本文所设计的结构及控制方法能够升高直流电压且具有故障容错运行能力,保证双向交直流变换器在桥臂故障下能够持续可靠运行。通过与传统无容错变换器的仿真及实验对比,验证了本文所设计的结构及控制策略的有效性和可靠性。
英文摘要:
      The fault-tolerant operation ability of bidirectional AC / DC converter can effectively improve its reliability. Considering the DC-side voltage regulation and the fault-tolerant operation control of bidirectional converter, a two-stage converter structure that the double active bridge (DAB) cascades the fault-tolerant three-phase four-switch structure (FSTP) and the four vectors model predictive power control strategy are proposed. The DAB is used to increase the DC side voltage when the switching devices have fault. The FSTP structure is used to achieve fault-tolerant operation with phase fault. Comparing with the traditional converter without fault-tolerant structure, the proposed structure and control method can increase the DC voltage and realize fault-tolerant operation, which ensure that bidirectional AC / DC converter can operate reliably with phase fault. The simulation and experimental comparisons with traditional converter verify the effectiveness and reliability of the proposed structure and strategy.
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