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Open AccessJournal ArticleDOI

Small Signal Modeling of a DC-DC Type Double Boost Converter Integrated with SEPIC Converter Using State Space Averaging Approach

G. Kanimozhi, +2 more
- 01 Jun 2017 - 
- Vol. 117, pp 835-846
TLDR
In this paper, a DC-DC type double boost converter integrated with SEPIC converter is presented, which consists of seven dynamic elements and hence it would be interesting to study the small-signal model of the converter.
About
This article is published in Energy Procedia.The article was published on 2017-06-01 and is currently open access. It has received 14 citations till now. The article focuses on the topics: Boost converter & Ćuk converter.

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Citations
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Proceedings ArticleDOI

Design and implementation of closed loop controlled boost converter for solar power installation system using fuzzy logic controller

TL;DR: A controlled approach to achieving a constant voltage despite of change in load and supply voltage for a solar photovoltaic system based application is proposed.
Journal ArticleDOI

Experimental validation of multi-loop controllers for two-level cascaded positive output boost converter

TL;DR: An investigation of multi-loop controllers (MLCs) for two-level cascaded positive output boost converter (TLCPOBC) operating in the continuous conduction mode (CCM) was carried out and MLCs are suggested to control the output voltage and inductor current of the TLC POBC.
Book ChapterDOI

Distributed Converters in Large PV Plants: Performance Analysis Supported by Behavioral Models

TL;DR: A novel behavioral modeling approach, based on an integrated state-space average model, can improve the performance analysis ensuring a satisfactory accuracy but keeping a low computation effort.
Journal ArticleDOI

Review of DC-DC Converter Topologies Based on Impedance Network with Wide Input Voltage Range and High Gain for Fuel Cell Vehicles

TL;DR: In this article, a review of the research status of DC-DC boost converters based on an impedance network is presented, providing a reference for designing wide input range and high gain boost converter topologies for fuel cell vehicles.
Journal ArticleDOI

Performance Assessment of Large Photovoltaic (PV) Plants Using an Integrated State-Space Average Modeling Approach

TL;DR: The proposed model, whose accuracy is in the range from 2.2 to 2.7% with respect to the measured energy, effectively supports data analysis leading to a consistent performance assessment for the distributed conversion system.
References
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Proceedings ArticleDOI

A general unified approach to modelling switching-converter power stages

TL;DR: A new canonical circuit model is proposed, whose fixed topology contains all the essential inputr-output and control properties of any dc-todc switching converter, regardless of its detailed configuration, and by which different converters can be characterized in the form of a table conveniently stored in a computer data bank to provide a useful tool for computer aided design and optimization.
Journal ArticleDOI

Boost Converter With Coupled Inductors and Buck–Boost Type of Active Clamp

TL;DR: An improved boost converter with coupled inductors and buck-boost type of active-clamp feature, PWM control and zero-voltage switching in both main and auxiliary switches, and efficiency can be improved significantly.
Journal ArticleDOI

Design of a Wide Input Range DC–DC Converter With a Robust Power Control Scheme Suitable for Fuel Cell Power Conversion

TL;DR: The robust features of the proposed control system ensure a constant output DC voltage for a variety of load fluctuations, thus limiting the power being delivered by the fuel cell during a load transient.
Journal ArticleDOI

A High Voltage Gain DC–DC Converter Integrating Coupled-Inductor and Diode–Capacitor Techniques

TL;DR: In this paper, a single-switch high step-up nonisolated dc-dc converter integrating coupled inductor with extended voltage doubler cell and diode-capacitor techniques is presented.
Journal ArticleDOI

High Step-Up High-Efficiency Interleaved Converter With Voltage Multiplier Module for Renewable Energy System

TL;DR: A novel high step-up converter, which is suitable for renewable energy system, is proposed in this paper, and the configuration of the proposed converter not only reduces the current stress but also constrains the input current ripple, which decreases the conduction losses and lengthens the lifetime of the input source.
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