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Journal ArticleDOI

A Soft-Switched Power Module With Integrated Battery Interface for Photovoltaic-Battery Power Architecture

Sanjida Moury, +1 more
- 01 Sep 2020 - 
- Vol. 8, Iss: 3, pp 3090-3110
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TLDR
An integrated battery storage interface with soft-switching capability for module-integrated PV systems and Experimental results on a 175-W proof-of-concept prototype are presented to demonstrate the features of the proposed converter.
Abstract
In conventional photovoltaic (PV)-battery systems, a centralized battery storage system (BSS) is typically connected through a separate bidirectional converter at the common dc link to support the PV system. It is known that a bidirectional converter typically requires more switches than a unidirectional converter, and hence, a complete PV-battery power interface will result in a high-cost system and will suffer high power losses. This paper proposed an integrated battery storage interface with soft-switching capability for module-integrated PV systems. In the proposed system, a multi-input converter (MIC) structure that consists of an integrated soft-switched quasi-resonant (QR) Cuk- and flyback-based circuit is presented. In this approach, the battery charging circuit is integrated with the input side of the PV power optimizer while the battery discharging circuit of the proposed system shares the output filter of the PV power optimizer, resulting in a compact and efficient system. The proposed converter is capable of tracking the maximum power point (MPP) and following the charging profile (constant voltage and constant current) of the battery. Moreover, all the switches in the proposed converter are able to achieve soft-switched turn on and turn off for different operating conditions. The operating principles and the theoretical analysis of the proposed system are presented. Experimental results on a 175-W proof-of-concept prototype are presented to demonstrate the features of the proposed converter.

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Citations
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Journal ArticleDOI

A State-of-the-Art Review on Soft-Switching Techniques for DC–DC, DC–AC, AC–DC, and AC–AC Power Converters

TL;DR: This article provides a comprehensive review of the state-of-the-art soft-switching techniques used to achieve the zero-voltage switching and zero-current switching supplied by power switching devices.
Journal ArticleDOI

A Lossless Passive Snubber Circuit for Three-Port DC–DC Converter

TL;DR: In this paper, a soft-switched nonisolated high step-up three-port dc-dc converter is presented for hybrid energy system applications, where the soft switching condition is provided for semiconductor elements by a passive lossless snubber without adding any extra active switch or adding any additional semiconductor element in the main power path.
Journal ArticleDOI

A Soft-Switched, Multiport Photovoltaic Power Optimizer With Integrated Storage Interface and Output Voltage Regulation

TL;DR: A multiport converter (MPC) configuration for a photovoltaic (PV) battery system is proposed, capable of regulating the output voltage, following battery charging profile and tracking the maximum power point of each PV module.

A High Step-Up Three-Port DC–DC Converter With Reduced Voltage Stress for Hybrid Energy Systems

TL;DR: In this paper , a three-port dc-dc converter for hybridized energy applications is proposed, which applies one coupled inductor and two CI-based voltage multipliers to increase the voltage gain.

Flexible Active Power Control of Distributed Photovoltaic Systems With Integrated Battery Using Series Converter Configurations

TL;DR: In this article , the authors investigated the implementation of flexible active power control (FAPC) functions in series-PV-battery systems, where the power ramp-rate/limiting/reserve constraints are maintained by the coordinated control of individual converters.
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Journal ArticleDOI

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