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Diode-Assisted Buck–Boost Voltage-Source Inverters

机译:二极管辅助的降压-升压电压源逆变器

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This paper proposes a number of diode-assisted buck–boost voltage-source inverters with a unique X-shaped diode–capacitor network inserted between the inverter circuitry and dc source for producing a voltage gain that is comparatively higher than those of other buck–boost conversion techniques. Using the diode-assisted network, the proposed inverters can naturally configure themselves to perform capacitive charging in parallel and discharging in series to give a higher voltage multiplication factor without compromising waveform quality. In addition, by adopting different front-end circuitries, a number of diode-assisted inverter variants can be designed with each having its own operational principle and voltage gain expression. For controlling them, a generic modulation scheme that can be used for controlling all diode-assisted variants with minimized harmonic distortion and component stress is first designed, before proceeding on to design a second scheme with minimized commutation count for complement. All theoretical findings discussed in the paper were verified experimentally using a number of scale-down laboratory prototypes with relevant results presented in a later section for visual confirmation.
机译:本文提出了许多二极管辅助的降压-升压电压源逆变器,它们在逆变器电路和直流电源之间插入了独特的X形二极管-电容器网络,以产生比其他降压-升压电路更高的电压增益。转换技术。通过使用二极管辅助网络,建议的逆变器可以自然地配置自己以进行并联电容充电和串联放电,以提供更高的电压倍增系数,而不会影响波形质量。此外,通过采用不同的前端电路,可以设计许多二极管辅助逆变器变体,每个变体都有其自己的工作原理和电压增益表示。为了控制它们,首先设计了一种通用调制方案,该方案可用于控制所有具有最小谐波失真和组件应力的二极管辅助变体,然后继续设计具有最小换向计数的第二种方案以进行补偿。本文讨论的所有理论发现均使用许多按比例缩小的实验室原型进行了实验验证,相关结果将在随后的章节中进行直观确认。

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