Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/3720
Title: Sliding mode controller for extraction and supply of photovoltaic power using switched series parallel sources reduced switch count multilevel inverter
Authors: Gowd, G. Eshwar
Sreenivasarao, Dharmavarapu
Vemuganti, Hari Priya
Keywords: Bridge circuits
Controllers
Issue Date: 2021
Publisher: IET Power Electronics
Citation: 10.1049/pel2.12068
Abstract: The reduced switch count multilevel inverter (RSC-MLI) is the latest trend in power elec tronic converters due to reduction in the switch count and cost. However, a large number of RSC-MLIs have not yet reached to the application level because of the absence of mod ularity, unequal load-sharing among DC sources and the absence of switching redundan cies. On the other hand, multilevel dc-link (MLDCL) and switched series parallel sources (SSPS) RSC-MLI topologies are modular structures with adequate switching redundancies and can be an alternative to conventional cascaded H-bridge (CHB) for grid-connected photovoltaic (PV) systems. Therefore, in this paper, a comprehensive comparison among CHB, MLDCL and SSPS topologies has been carried out for grid connected PV applica tion. Based on the outcome, an asymmetric 11 kV three-phase 11-level SSPS RSC-MLI is chosen. In this combination, a common non-linear sliding mode controller (SMC) is devel oped for generating maximum PV power from asymmetric single-stage PV sources by lin earizing the non-linear PV system using an effective feedback linearization scheme. The PV power extracted is delivered to the grid by controlling SSPS RSC-MLI using another SMC. The performance of the system under wide variations of insolation levels is verified in MATLABandfurther validated in hardware-in-the-loop OPAL-RT controller
Description: NITW
URI: http://localhost:8080/xmlui/handle/123456789/3720
Appears in Collections:Electrical Engineering

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