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Open AccessJournal ArticleDOI

Integration of Photovoltaic-Based Transformerless High Step-Up Dual-Output–Dual-Input Converter with Low Power Losses for Energy Storage Applications

Belqasem Aljafari, +3 more
- 31 Jul 2022 - 
- Vol. 15, Iss: 15, pp 5559-5559
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TLDR
In this paper , the authors proposed a non-isolated DC-DC converter, which has a high step-up capability and multiple ports for outputs and inputs for ESS applications.
Abstract
The synchronous integration of numerous input and output loads is possible with multi-input (MI) and multi-output (MO) DC–DC converters. In this paper, the non-isolated DC–DC converter described, which has a high step-up capability and multiple ports for outputs and inputs for energy storage system (ESS) applications. The voltage level of the converter is changeable. The capacity to provide the large voltage increases with a low duty cycle portion, the ease with which each duty cycle can be controlled, and minimal power losses are all advantages of the proposed design. The proposed system offers advantages for applications requiring energy storage. In the continuous conduction mode (CCM), the operation principles, steady-state evaluation, and extracting of the voltage and current coefficients are performed. The supply sources can be inserted or withdrawn without causing a cross-regulation issue in the proposed converter. Ultimately, the functionality of the proposed structure is examined using simulation and the laboratory prototype that has been implemented. The proposed converter achieved 94.3% efficiency at maximum power. In addition, the proposed converter attained minimum losses with a difference of 28.5 W when compared to a conventional converter.

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Citations
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A Review on Hydrogen-Based Hybrid Microgrid System: Topologies for Hydrogen Energy Storage, Integration, and Energy Management with Solar and Wind Energy

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An Investigation on Battery Management System for Autonomous Electric Vehicles

TL;DR: In this paper , the authors presented the study of battery monitoring systems (BMS) in Autonomous Electric Vehicles (AEVs) using very large scale integration (VLSI) to improve the efficiency of the BMS.
Proceedings ArticleDOI

A Succinct Summary of the Solar MPPT Utilizing a Diverse Optimizing Compiler

TL;DR: In this paper , the authors compared the performance of various AI-based MPPT approaches and found that ANN algorithm is less complex, more efficient in tracking ability, periodic tuning is available.
Proceedings ArticleDOI

A Succinct Summary of the Solar MPPT Utilizing a Diverse Optimizing Compiler

TL;DR: In this paper , the authors compared the performance of various AI-based MPPT approaches and found that ANN algorithm is less complex, more efficient in tracking ability, periodic tuning is available.
References
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Journal ArticleDOI

A Nonisolated Multiinput Multioutput DC–DC Boost Converter for Electric Vehicle Applications

TL;DR: In this article, a non-isolated multi-input multi-output dc-dc boost converter is proposed for hybridizing alternative energy sources in electric vehicles, where the loads power can be flexibly distributed between input sources and charging or discharging of energy storages by other input sources can be controlled properly.
Journal ArticleDOI

DC-to-DC Converters With Continuous Input and Output Power

TL;DR: In this article, the authors present three topological classes of dc-to-dc converters, totaling nine converters (each class with three buck, boost, and buck-boost voltage transfer function topologies), which offer continuous input and output energy flow.
Journal ArticleDOI

A Digital Method of Power-Sharing and Cross-Regulation Suppression for Single-Inductor Multiple-Input Multiple-Output DC–DC Converter

TL;DR: A digital method to regulate the single-inductor multiple-input multiple-output (SI-MIMO) dc–dc converter, which can integrate renewable sources and loads as the hybrid renewable energy system with less components, is presented.
Journal ArticleDOI

A new multi-input step-up DC–DC converter for hybrid energy systems

TL;DR: In this paper, a new extendable multi-input step-up DC-DC converter (MISUC) topology is proposed to efficiently interface multiple (renewable/non-conventional) energy sources of different output characteristics with a common load.
Journal ArticleDOI

Multi-input Step-Up Converters Based on the Switched-Diode-Capacitor Voltage Accumulator

TL;DR: In this paper, two different kinds of multi-input step-up converters with high voltage gains, low component stresses, low ripples, simple control, and high conversion efficiencies are presented.