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However, in practical situations, when the grounding current flows a large enough distance, the soil potential and the electric field will effectively reduce to zero.
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Therefore, the ground current can be reduced.
Therefore, the suppression of ground current is a necessity for the transformerless PV inverter [3].
The ground current results in electromagnetic interference and safety issues [2].
(from Fig. 1 of Kikuchi 2014) Fig. 12 Magnetosphere-ionosphere-ground current circuit achieved in a steady state.
It can achieve the ground current reduction by keeping the parasite capacitor voltage free of high frequency components.
Performance evaluation is carried out to verify the effectiveness of the proposed topology for the ground current suppression.
It should be noted that this paper mainly focused on the ground current reduction in single-phase PV systems.
Another consideration that should be noted is the effect of the switch parasitic capacitance on the ground current.
However, the ground current may arise because there is no galvanic isolation between the inverter and grid.
In general, the ground current results from the high-frequency voltage components across the parasite capacitor between the PV system and the ground.
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