中国电机工程学报 2010, 30(3) 28-34 DOI:     ISSN: 0258-8013 CN: 11-2107/TM

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本文关键词相关文章
新型载波相移SPWM
级联型多电平变流器
PWM脉冲发生器
频域调制模型
热稳定性
本文作者相关文章
王立乔
齐飞
PubMed
Article by Yu,L.J
Article by Zi,f
级联型多电平变流器新型载波相移SPWM研究
王立乔,齐飞
电力电子节能与传动控制河北省重点实验室(燕山大学)
摘要: 将单极性正弦脉宽调制(sine pulse width modulation,SPWM)引入到级联型多电平变流器中,提出一种新型载波相移SPWM策略。该策略较传统的载波相移SPWM可以节省一半的脉宽调制(pulse width modulation,PWM)脉冲发生器,对级联型多电平逆变器的数字化实现有重要的理论和实用价值。给出新型载波相移SPWM的2种调制方式,分别推导频域调制模型,并对其谐波特性进行分析、比较和仿真验证。仿真结果表明,对于单相系统,2种方式基本相当;对于三相系统,方式二的谐波特性更好。分析新型载波相移SPWM技术的热稳定性问题,并给出其解决办法。实验结果验证了理论分析和仿真研究的正确性。
关键词 新型载波相移SPWM   级联型多电平变流器   PWM脉冲发生器   频域调制模型   热稳定性  
Novel Carrier Phase-shifted SPWM for Cascade Multilevel Converter
WANG Li-qiao, QI Fei
Key Lab of Power Electronics for Energy Conservation and Motor Drive of Hebei Province (Yanshan University)
Abstract: A novel carrier phase-shifted sine pulse width modulation (SPWM) strategy was proposed in this paper by introducing unipolar SPWM into cascade multilevel converters. The amount of pulse width modulation (PWM) pulse generators of the proposed modulation strategy is only the half of that of the traditional modulation strategy, which is of significant theoretical and practical value for the digital implementation of cascade multilevel converter. The two modes of novel carrier phase-shifted SPWM were given. The frequency domain modulated model of both modes was deduced. The harmonics feature of both modes was analyzed and compared, which is verified through simulation. Simulation result includes that both modes are equivalent for single phase system, and mode 2 is better than mode 1 at harmonic feature for three phase system. The thermal stability of novel carrier phase-shifted SPWM was analyzed and settled by an easy scheme. Experimental results proved the correctness of theoretical analyses and simulation research.
Keywords: novel carrier phase-shifted SPWM   cascade multilevel converter   PWM pulse generator   frequency domain modulated model   thermal stability  
收稿日期 2009-05-13 修回日期 2009-07-09 网络版发布日期 2010-01-28 
DOI:
基金项目:

国家自然科学基金项目(50707028,50837003)。

通讯作者: 王立乔
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