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首页> 外文期刊>IEEJ Journal of Industry Applications >Analysis and Experimentation of Modular Differential Inverter Utilizing SEPIC Modules and SIC Devices for Grid Connected Applications
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Analysis and Experimentation of Modular Differential Inverter Utilizing SEPIC Modules and SIC Devices for Grid Connected Applications

机译:模块化差流利用SEPIC模块和SIC器件进行电网连接应用的分析与实验

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This paper presents a three-phase Modular Differential Inverter (MDI) utilizing DC-DC modules that provide AC power to the utility grid with step-up voltage capability. The construction of the MDI has many advantages such as flexibility and reliability, and can be designed, optimized and scaled to any power level. Moreover, Single-Ended Primary-Inductor Converter (SEPIC) modules have been proposed to incorporate in the MDI because it has many merits that enhance the overall performance of the differential inverter. SiC devices are also integrated into the SEPIC modules for efficient operation at a high switching frequency. An in-depth mathematical model discussing the practical issues of differential inverter such as variable duty cycle, low order harmonics and circulating power is also presented. The design steps of the proposed SEPIC modules are presented in detail considering the standard grid side requirements of total harmonic distortion (THD). The MDI, which implements three parallel modules in each phase, is investigated using PSIM simulation software. A mismatch of ±20% in the SEPIC module parameters of each phase is investigated to confirm the system performance. Moreover, a laboratory prototype of the system, considering only one SEPIC module in each phase with 200V grid-side voltage, 1.6kW, and 50kHz switching frequency, is carried out to verify the validity of the system.
机译:本文介绍了一种三相模块化差动逆变器(MDI),利用DC-DC模块,为公用电网提供交流电网,具有升压电压能力。 MDI的构造具有许多优点,例如灵活性和可靠性,并且可以设计,优化和缩放到任何功率水平。此外,已经提出了单端初级电感器转换器(SEPIC)模块在MDI中包含,因为它具有增强差动逆变器的整体性能的优点。 SIC设备还集成到SEPIC模块中,以便以高开关频率有效。还提出了深入的数学模型,讨论了差动逆变器如可变占空比,低阶谐波和循环力的实际问题。考虑到总谐波失真(THD)的标准网格侧要求,详细介绍了所提出的SEPIC模块的设计步骤。使用PSIM仿真软件研究了在每个阶段实现三个并联模块的MDI。研究了每个阶段的SEPIC模块参数中±20%的不匹配,以确认系统性能。此外,该系统的实验室原型,考虑在每个相中的一个SEPIC模块,以200V电网侧电压为1.6kW和50kHz开关频率,以验证系统的有效性。

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