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Linearly controllable boost voltages from Tri-Level PWM current-source inverter

机译:三电平PWM电流源逆变器的线性可控升压电压

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The peak line-to-line inverter AC voltage, in general, cannot exceed the supply DC voltage and transformers have to be used when voltage step-up is required. This paper describes how the necessity of using a Tri-Level PWM strategy in the current source inverter can be turned into an advantage by producing a voltage boost so that transformers are no longer required. During the frequent occurrence of the "shoot-through" states, which is the characteristic of the Tri-Level PWM-controlled inverter, magnetic energy builds up in the DC link inductor. At the end of these periods, the L/sub dc/dI/sub dc//dt voltage across the inductor augments the inverter output voltage in the same way as in the basic boost type DC/DC power converter. The paper describes the circuitry required to ensure linear control. Analytical, simulation, and experimental results are given. Applications are found in all instances where the AC voltage is higher than the available supply DC voltage.
机译:通常,峰值线间逆变器交流电压不能超过电源直流电压,并且在需要升压时必须使用变压器。本文描述了如何通过产生升压将在电流源逆变器中使用三电平PWM策略的优势转化为优势,从而不再需要变压器。在频繁出现的“直通”状态(这是三级PWM控制的逆变器的特征)期间,直流链路电感器中会积聚磁能。在这些周期结束时,电感器上的L / sub dc / dI / sub dc // dt电压以与基本升压型DC / DC电源转换器相同的方式增大逆变器输出电压。本文介绍了确保线性控制所需的电路。给出了分析,仿真和实验结果。在交流电压高于可用电源直流电压的所有情况下均可找到应用。

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