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提出了2种具有高电压传输比的新型矩阵变换器,根
据逆变侧主电路拓扑结构的不同,将其分别称为Boost 矩阵
变换器(BMC)和Buck-Boost矩阵变换器(BBMC)。介绍了这
2种拓扑结构的基本构成和工作原理,阐述了滑模控制器和
双闭环控制器的设计方法,并对其进行了比较,最后通过仿
真证明了该新型电路结构的可行性和有效性。结果表明:该
电路能实现电压传输比和输出频率的任意调节,且波形失真
度小,从而有效地解决了传统矩阵变换器(CMC)电压传输比
低的固有缺陷,具有很好的应用价值。-This paper presents a novel matrix converter
which has high voltage transfer ratio. According to the
topology of the inverter side is different, they are called Boost
matrix converter (BMC) and Buck-Boost matrix converter
(BBMC).The basic configuration of the new topology and their
fundamental principle are firstly introduced, the method of
design sliding mode controller and double-loop controller are
clarified, analyzed and compared. Finally the validity and
feasibility of the new topology are tested by simulation. The
results indicate that the regulation of the voltage transfer ratio
and output frequency can be realized optionally by the new
converter, furthermore the harmonic distortion of waveform is
low. So the inherent drawback of low voltage transfer ratio of
traditional matrix converter is effectively settled. This study
may provide inspiration for further engineering application
据逆变侧主电路拓扑结构的不同,将其分别称为Boost 矩阵
变换器(BMC)和Buck-Boost矩阵变换器(BBMC)。介绍了这
2种拓扑结构的基本构成和工作原理,阐述了滑模控制器和
双闭环控制器的设计方法,并对其进行了比较,最后通过仿
真证明了该新型电路结构的可行性和有效性。结果表明:该
电路能实现电压传输比和输出频率的任意调节,且波形失真
度小,从而有效地解决了传统矩阵变换器(CMC)电压传输比
低的固有缺陷,具有很好的应用价值。-This paper presents a novel matrix converter
which has high voltage transfer ratio. According to the
topology of the inverter side is different, they are called Boost
matrix converter (BMC) and Buck-Boost matrix converter
(BBMC).The basic configuration of the new topology and their
fundamental principle are firstly introduced, the method of
design sliding mode controller and double-loop controller are
clarified, analyzed and compared. Finally the validity and
feasibility of the new topology are tested by simulation. The
results indicate that the regulation of the voltage transfer ratio
and output frequency can be realized optionally by the new
converter, furthermore the harmonic distortion of waveform is
low. So the inherent drawback of low voltage transfer ratio of
traditional matrix converter is effectively settled. This study
may provide inspiration for further engineering application
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具有高电压传输比的BMC和BBMC矩阵变换器研究_朱建林.pdf