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Coupled-Inductor-Based DC Current Measurement Technique for Transformerless Grid-Tied Inverters

机译:无变压器并网逆变器的基于耦合电感的直流电流测量技术

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Grid-tied photovoltaic inverters must fulfill several requirements, including high efficiency and reduced cost and complexity of the overall system. Hence, transformerless operation is advantageous in order to achieve the prior requirements. Meanwhile, such operation results in several demerits, such as the dc current component injection into the grid. This component should be effectively mitigated in order to avoid some impacts, such as the saturation of the transformers in the distribution network. On the other hand, limiting this component up to few milliamperes is a challenging issue due to the various measurement errors. Accordingly, different blocking and measurement techniques have been proposed and studied to overcome this issue, where some demerits are seen behind each technique such as the implementation complexity, the common-mode voltage problems, and the high filter requirements. Moreover, none of them measures the dc component directly, but predicts its value using different approaches. Hence, this letter proposes a new technique to measure this dc current component with high accuracy using a coupled inductor combined with a small-range Hall effect current sensor in order to achieve the lowest possible cost with the highest possible accuracy. The proposed technique is introduced, analyzed, and tested experimentally to verify its principle of operation. Also experimental measurement of the dc current component using a 5-kVA transformerless grid-tied voltage-source inverter is introduced with and without the proposed technique in order to validate its operation.
机译:并网光伏逆变器必须满足几个要求,包括高效率,降低成本和整个系统的复杂性。因此,无变压器运行有利于达到先前的要求。同时,这种操作导致一些缺点,例如将直流电流分量注入电网。为了避免一些影响,例如配电网络中变压器的饱和,应该有效地缓解这一因素。另一方面,由于各种测量误差,将这个分量限制为几毫安是一个具有挑战性的问题。因此,已经提出并研究了不同的阻塞和测量技术来克服该问题,其中每种技术背后都有一些缺点,例如实现复杂性,共模电压问题和高滤波器要求。而且,它们都没有直接测量直流分量,而是使用不同的方法预测其值。因此,这封信提出了一种新技术,该技术将耦合电感器与小范围霍尔效应电流传感器结合使用,以高精度测量该直流电流分量,从而以最高可能的精度实现最低的成本。对提出的技术进行了介绍,分析和实验测试,以验证其工作原理。还介绍了使用5-kVA无变压器并网电压源逆变器对直流电流分量进行的实验测量,以验证其运行情况。

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