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Voltage Modulation and Current Control of Boost Inverters for Stand-Alone or Grid-Tied Operation

机译:用于独立或网格绑定操作的升压反相器的电压调制和电流控制

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摘要

Boost inverters can step up dc voltage and carry out dc-to-ac conversion by means of a differential output across two boost converters. Although the differential output is beneficial to reject the common-mode noise, the inconsistency in circuit parameters between the two converters may cause an inevitable dc component in ac current. In addition, since the voltage gain of the boost converter is in nonlinear correlation with the duty ratio, the control bandwidth required for input state and output state would disparate and make the control design difficult. To overcome the nonlinearity of the boost inverter, a passivity-based voltage modulator was presented to take the place of the modulator derived from the ideal voltage gain. While the input state (inductor current) is stabilized by the proposed modulator according to the desired output voltage and ac current, the remaining problem is the control of the dc-biased sinusoidal output voltage to meet the required ac current. The integration of a dc-component compensator, a proportional-resonant controller, and a voltage drop compensator were presented for achieving ac current regulation with a satisfactory response. To further refine the power efficiency of the boost inverter, the lower limit of the dc bias of the converter output voltage was considered. Experimental results show the effectiveness of the proposed approaches.
机译:升压逆变器可以通过两个升压转换器跨差分输出进行DC电压并通过差分输出进行DC到AC转换。虽然差分输出是有益的拒绝共模噪声,但两个转换器之间的电路参数的不一致可能导致AC电流中不可避免的DC分量。另外,由于升压转换器的电压增益与占空比为非线性相关性,所以输入状态和输出状态所需的控制带宽将不同并且使控制设计难以。为了克服升压逆变器的非线性,提出了一种基于主的电压调制器以取代来自理想电压增益的调制器的位置。虽然根据所需的输出电压和AC电流所提出的调制器稳定输入状态(电感器电流),但其余的问题是控制DC偏置正弦输出电压以满足所需的AC电流。提出了DC组件补偿器,比例谐振控制器和电压降补液器的集成,以实现具有令人满意的响应的AC电流调节。为了进一步优化升压逆变器的功率效率,考虑了转换器输出电压的DC偏置的下限。实验结果表明了拟议方法的有效性。

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