2022
DOI: 10.1109/ojpel.2022.3155053
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240$^\circ$-Clamped PWM Applied to Transformerless Grid Connected PV Converters With Reduced Common Mode Voltage and Superior Performance Metrics

Abstract: Transformerless voltage source inverters (VSIs) are one of the popular topologies for photovoltaic (PV) gridconnected applications due to the lowest component count and simple design. Because of the absence of galvanic isolation in such systems, problem of electromagnetic interference (EMI) due to high leakage current is highly pronounced. Recently various reduced common mode voltage (CMV) PWM (RCMV-PWM) methods which address these issues of CMV, and leakage current have been proposed. These schemes typically … Show more

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Cited by 8 publications
(1 citation statement)
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References 47 publications
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“…Details of 240CPWM concept, generation of switching signals and implementation of 240CPWM using space vector approach have been discussed in detail in [24]. In [26], 240CPWM is selected as an ideal candidate for grid connected PV converters in terms of all round performance of switching loss, THD, DC link current stress, CMV and leakage current. Despite various advantages of 240CPWM, it comes with the inherent problem of low frequency harmonics i.e., six times the fundamental frequency (6 f 1 ) harmonics to maintain six-pulse dynamically varying DC link voltage.…”
Section: Introductionmentioning
confidence: 99%
“…Details of 240CPWM concept, generation of switching signals and implementation of 240CPWM using space vector approach have been discussed in detail in [24]. In [26], 240CPWM is selected as an ideal candidate for grid connected PV converters in terms of all round performance of switching loss, THD, DC link current stress, CMV and leakage current. Despite various advantages of 240CPWM, it comes with the inherent problem of low frequency harmonics i.e., six times the fundamental frequency (6 f 1 ) harmonics to maintain six-pulse dynamically varying DC link voltage.…”
Section: Introductionmentioning
confidence: 99%