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DC Injection Suppression in Transformer-Less Grid-Connected Inverter using a DC-Link Current Sensing and Active Control Approach

机译:使用直流母线电流感测和有源控制方法的无变压器逆变器中的直流注入抑制

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摘要

There is increasing interest in the use of transformer-less systems for grid-connected photovoltaic applications. Compared to transformer-coupled solutions, transformer-less systems offer a typical efficiency increase of 1-2%, reduced system size and weight, and a reduction in cost. However, the removal of the transformer has technical implications. In addition to the loss of galvanic isolation, dc current injection into the grid is a potential risk. While desirable, complete mitigation of dc current injection via convention current control methods is known to be particularly challenging. For this reason, this paper proposes an active dc suppression method, in which the dc current injection is accurately determined by extracting the line-frequency component from inverter dc-link current measurements, and then, mitigated with an active closed-loop controller. Experimental results from a laboratory grid-connected inverter system are presented to demonstrate the high performance of the proposed technique.
机译:对于将无变压器系统用于并网光伏应用,人们越来越感兴趣。与变压器耦合解决方案相比,无变压器系统的效率通常提高了1-2%,减小了系统尺寸和重量,并降低了成本。但是,拆除变压器具有技术意义。除了失去电流隔离之外,向电网注入直流电流也是潜在的风险。尽管合乎需要,但通过常规电流控制方法完全缓解直流电流注入是特别具有挑战性的。因此,本文提出了一种有源直流抑制方法,该方法是通过从逆变器直流链路电流测量值中提取线路频率分量来精确确定直流电流注入,然后采用有源闭环控制器进行缓解。提出了实验室并网逆变器系统的实验结果,以证明所提出技术的高性能。

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