Matches in SemOpenAlex for { <https://semopenalex.org/work/W4386070348> ?p ?o ?g. }
- W4386070348 endingPage "3545" @default.
- W4386070348 startingPage "3545" @default.
- W4386070348 abstract "Photovoltaic transformerless inverters are very efficient and economical options for solar-power generation. The absence of the isolation transformer improves the converters’ efficiency, but high-frequency voltage to ground can appear in the photovoltaic string poles. The high capacitance to ground of the photovoltaic generator leads to undesirable high-leakage currents. Using half-bridge topologies dramatically reduces the leakage to ground, and using a multilevel half-bridge inverters improves the output quality compared with classical inverters. The neutral point clamped + generation control circuit (NPC + GCC) topology is a multilevel single-phase transformerless inverter capable of tracking the maximum power point of two photovoltaic sources at the same time. This paper presents the control structure and the dynamic modeling of the NPC + GCC inverter. The pulse-width modulated (PWM) switch model in continuous conduction mode (CCM) was used to obtain the small-signal model of the two switching converters that make up the inverter. The resulting dynamic model was used to quantify the stability margins of both converters’ current and voltage loops." @default.
- W4386070348 created "2023-08-23" @default.
- W4386070348 creator A5021174401 @default.
- W4386070348 creator A5030266248 @default.
- W4386070348 creator A5030287820 @default.
- W4386070348 creator A5050898096 @default.
- W4386070348 creator A5083086875 @default.
- W4386070348 creator A5091924189 @default.
- W4386070348 date "2023-08-22" @default.
- W4386070348 modified "2023-09-25" @default.
- W4386070348 title "Small-Signal Model of the NPC + GCC Multilevel Transformerless Inverter in Single-Phase Photovoltaic Power Systems" @default.
- W4386070348 cites W1808644832 @default.
- W4386070348 cites W1966235450 @default.
- W4386070348 cites W1971013777 @default.
- W4386070348 cites W2025506626 @default.
- W4386070348 cites W2044050323 @default.
- W4386070348 cites W2048839146 @default.
- W4386070348 cites W2051804398 @default.
- W4386070348 cites W2052821945 @default.
- W4386070348 cites W2064032565 @default.
- W4386070348 cites W2064520967 @default.
- W4386070348 cites W2072075262 @default.
- W4386070348 cites W2072630292 @default.
- W4386070348 cites W2082454940 @default.
- W4386070348 cites W2086921508 @default.
- W4386070348 cites W2097847386 @default.
- W4386070348 cites W2100096355 @default.
- W4386070348 cites W2106482668 @default.
- W4386070348 cites W2108082843 @default.
- W4386070348 cites W2110614351 @default.
- W4386070348 cites W2112492205 @default.
- W4386070348 cites W2116838339 @default.
- W4386070348 cites W2130845637 @default.
- W4386070348 cites W2163491384 @default.
- W4386070348 cites W2241878412 @default.
- W4386070348 cites W2404025853 @default.
- W4386070348 cites W2491172893 @default.
- W4386070348 cites W2541400468 @default.
- W4386070348 cites W2897656176 @default.
- W4386070348 cites W2949724027 @default.
- W4386070348 cites W2990434398 @default.
- W4386070348 cites W3126313891 @default.
- W4386070348 cites W4206941106 @default.
- W4386070348 cites W4246862236 @default.
- W4386070348 cites W4256520629 @default.
- W4386070348 cites W4283781878 @default.
- W4386070348 cites W4313472019 @default.
- W4386070348 cites W4320801699 @default.
- W4386070348 cites W4362455107 @default.
- W4386070348 cites W4376645256 @default.
- W4386070348 cites W4379882134 @default.
- W4386070348 cites W4383345954 @default.
- W4386070348 doi "https://doi.org/10.3390/electronics12173545" @default.
- W4386070348 hasPublicationYear "2023" @default.
- W4386070348 type Work @default.
- W4386070348 citedByCount "0" @default.
- W4386070348 crossrefType "journal-article" @default.
- W4386070348 hasAuthorship W4386070348A5021174401 @default.
- W4386070348 hasAuthorship W4386070348A5030266248 @default.
- W4386070348 hasAuthorship W4386070348A5030287820 @default.
- W4386070348 hasAuthorship W4386070348A5050898096 @default.
- W4386070348 hasAuthorship W4386070348A5083086875 @default.
- W4386070348 hasAuthorship W4386070348A5091924189 @default.
- W4386070348 hasBestOaLocation W43860703481 @default.
- W4386070348 hasConcept C11190779 @default.
- W4386070348 hasConcept C119599485 @default.
- W4386070348 hasConcept C127413603 @default.
- W4386070348 hasConcept C154945302 @default.
- W4386070348 hasConcept C165801399 @default.
- W4386070348 hasConcept C184720557 @default.
- W4386070348 hasConcept C24326235 @default.
- W4386070348 hasConcept C2775924081 @default.
- W4386070348 hasConcept C2778422915 @default.
- W4386070348 hasConcept C36139824 @default.
- W4386070348 hasConcept C41008148 @default.
- W4386070348 hasConcept C41291067 @default.
- W4386070348 hasConcept C47446073 @default.
- W4386070348 hasConcept C66322947 @default.
- W4386070348 hasConcept C92746544 @default.
- W4386070348 hasConceptScore W4386070348C11190779 @default.
- W4386070348 hasConceptScore W4386070348C119599485 @default.
- W4386070348 hasConceptScore W4386070348C127413603 @default.
- W4386070348 hasConceptScore W4386070348C154945302 @default.
- W4386070348 hasConceptScore W4386070348C165801399 @default.
- W4386070348 hasConceptScore W4386070348C184720557 @default.
- W4386070348 hasConceptScore W4386070348C24326235 @default.
- W4386070348 hasConceptScore W4386070348C2775924081 @default.
- W4386070348 hasConceptScore W4386070348C2778422915 @default.
- W4386070348 hasConceptScore W4386070348C36139824 @default.
- W4386070348 hasConceptScore W4386070348C41008148 @default.
- W4386070348 hasConceptScore W4386070348C41291067 @default.
- W4386070348 hasConceptScore W4386070348C47446073 @default.
- W4386070348 hasConceptScore W4386070348C66322947 @default.
- W4386070348 hasConceptScore W4386070348C92746544 @default.
- W4386070348 hasIssue "17" @default.
- W4386070348 hasLocation W43860703481 @default.
- W4386070348 hasOpenAccess W4386070348 @default.
- W4386070348 hasPrimaryLocation W43860703481 @default.