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Triple-Switch DC-to-DC Converter for High-Voltage Boost Application-Revista

机译:用于高压升压应用-REVISTA的三重开关DC-DC转换器

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The presented manuscript gives a comparison of the recently proposed three-switch three-mode (TSTM-HS) and dual-duty three-mode (DDTM) DC-to-DC converters. DC microgrid is the easiest, fail-safe, economical, expandable, and high-yield solution which is gaining attention throughout the world and has become an important part of the distributed generation system due to its centralized renewable energy generation and decentralized storage. However, the non-conventional energy generation sources like fuel cells or solar PV cells are small-voltage power sources, which necessitate the use of DC-DC converters having a high gain and high efficiency in DC microgrids. For the voltage gain improvement, a TSTM-HS converter employs the voltage lift technique, and an extra switch is added to enhance the range of the duty cycle of the converter. Furthermore, there are three modes of operation with two kinds of duty cycles, and the use of extreme duty cycle across all the switches is avoided. On the other hand, three switches having two separate duty ratios, i.e., dual-duty are used to control the three working modes of the three-mode converters to obtain a broad duty ratio range.
机译:呈现的稿件给出了最近提出的三开关三模式(TSTM-HS)和双占三方模式(DDTM)DC-To-DC转换器的比较。 DC MicroGrid是最简单,故障安全,经济,可扩展的高收益措施,在全世界期间越来越关注,已成为分布式发电系统的重要组成部分,因为其集中式可再生能源发电和分散存储。然而,燃料电池或太阳能光伏电池等非传统能源产生源是小电压电源,这需要在DC微电网中使用具有高增益和高效率的DC-DC转换器。对于电压增益改进,TSTM-HS转换器采用电压提升技术,并添加额外开关以增强转换器的占空比范围。此外,避免了有三种操作模式,避免了两种占空比,并且避免了在所有开关上使用极端占空比。另一方面,使用具有两个单独占空比的三个开关,即两义用于控制三模转换器的三种工作模式以获得广泛的占空比范围。

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