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Enhancement of power quality in grid-connected systems using a predictive direct power controlled based PV-interfaced with multilevel inverter shunt active power filter. [PDF]
Boopathi R, Indragandhi V.
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Analysis and PWM Control of Switched Boost Inverter
IEEE Transactions on Industrial Electronics, 2013The Z-source inverter (ZSI) employs an LC impedance network between the main inverter bridge and the power source. The unique feature of the ZSI is that it can operate either in buck or boost mode with a wide range of obtainable output voltages from a given input voltage.
Santanu Mishra, Avinash Joshi
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A Single-Phase Single-Stage Switched-Boost Inverter With Four Switches
IEEE Transactions on Power Electronics, 2018This paper proposes a new single-phase single-stage switched-boost inverter with four switches. Like the quasi-Z-source inverter and quasi-switched boost inverter (qSBI), the proposed inverter has the main features as continuous input current, buck/boost voltage with single-stage conversion, and shoot-through immunity.
Minh-Khai Nguyen +2 more
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Fault‐tolerant switched capacitor–based boost multilevel inverter
International Journal of Circuit Theory and Applications, 2019SummaryThis paper proposes a fault‐tolerant switched capacitor (SC)–based boost multilevel inverter. The proposed inverter is able to convert a low‐level dc voltage into a desired ac output voltage in single‐stage power conversion. It can accomplish a high voltage gain by using multiple SC cells arrangement at reduced voltage stresses on the switching ...
Nita R Patne, Ajaykumar Thummalagunta
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Maximum Constant Boost Control of Four Switch Switched Boost Inverter
2020 International Conference on Futuristic Technologies in Control Systems & Renewable Energy (ICFCR), 2020A new control strategy for the four switch switched boost inverter is presented in this paper. A quasi-switched boost inverter is modified in order to derive the inverter structure. A maximum constant boost control technique is suggested for the four switch switched boost inverter.
C. Nihla, M. P. Subeekrishna
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Switched capacitor boost inverter
2016 IEEE 25th International Symposium on Industrial Electronics (ISIE), 2016The differential boost inverter (DBI) generates an alternating differential voltage from two dc-dc converters. The instantaneous output voltage can be higher or lower than the dc input voltage, however DBIs exhibit nonlinear control-to-output behavior in large-signal sense.
Gilberto Valentim Silva +2 more
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Compact Quadratic Boost Switched-Capacitor Inverter
IEEE Transactions on Industry Applications, 2022This article presents a new topology for a single-stage nine-level (9L) switched-capacitor inverter. The structure of the proposed topology is not only simple but also compact. The proposed topology is developed with self-voltage balancing and a low number of power components.
Mohamed AliJagabar Sathik +6 more
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Improved switching boost inverter
2016 IEEE 11th Conference on Industrial Electronics and Applications (ICIEA), 2016Z source inverter overcomes the shortcomings of the traditional voltage source and current source, but its DC side current is not continuous, the voltage utilization is low and the boost factor is limited. In recent years, some scholars have proposed a new inverter — switching boost inverter (SBI).
Yikun Jia +4 more
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A boost-switched capacitor-inverter with a multilevel waveform
2004 IEEE International Symposium on Circuits and Systems (IEEE Cat. No.04CH37512), 2004Two structures, a switched-capacitor (SC)-based boost converter and a two-level inverter, are connected in cascade. The DC multilevel voltage of the first stage becomes the input voltage of the classical inverter, resulting in a staircase waveform for the inverter output voltage. Such a multilevel waveform is closed to a sinusoid, its harmonics content
Boris Axelrod +2 more
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A 13-Level Switched-Capacitor-Based Boosting Inverter
IEEE Transactions on Circuits and Systems II: Express Briefs, 2021A new boosting multilevel inverter with switched-capacitors is presented in this brief. By employing 13 switches, two diodes, and three capacitors, a 13-level voltage waveform is synthesized. The capacitor voltages are self-balanced as they are connected in parallel with the input voltage source for several instances in every fundamental cycle.
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