高利得DC-DC応用のための正出力Luoコンバータ・トポロジのシミュレーション比較分析
Simulation Based Comparative Analysis Of Positive Output Luo Converter Topologies For High-Gain DC– DC Applications (原題)
INTI KRISHNATULASI, Dr. G.A. RATHY
🤖 gxceed AI 要約
日本語
本論文は、再生可能エネルギーや電気自動車向けの高利得DC-DCコンバータとして注目されるLuoコンバータの各種トポロジ(基本型、自己昇圧型、再昇圧型、超昇圧型など)を比較分析する。各方式の動作原理、電圧利得、構造複雑性、部品要件、性能、適用領域を整理し、利点と限界を明示する。さらに、制御戦略や再生可能エネルギー応用の最近の進展を概説し、今後の研究課題と次世代コンバータ開発の方向性を示す。
English
This paper presents a comparative analysis of positive output Luo converter topologies for high-gain DC-DC applications, focusing on renewable energy and electric vehicles. It reviews operating principles, voltage gain, structural complexity, component requirements, and performance of elementary, self-lift, re-lift, super-lift, and multiple-lift converters. Recent developments in control strategies and renewable applications are discussed, along with challenges and future research directions for next-generation converters.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本の再エネ導入拡大やEVシフトに伴い、高効率な電力変換技術は重要。本論文は系統連系や車載電源の設計に資する比較情報を提供し、国内のパワーエレクトロニクス研究や産業応用に参考となる。
In the global GX context
As global renewable energy and EV adoption accelerates, efficient power conversion is critical. This comparative study supports the design of high-gain converters for solar, fuel cell, and EV systems, contributing to the broader energy transition and decarbonization goals.
👥 読者別の含意
🔬研究者:Provides a structured comparison of Luo converter topologies, useful for selecting or improving high-gain DC-DC converters in renewable and EV applications.
🏢実務担当者:Offers guidance on converter topology selection for power electronics design in renewable energy or EV systems, potentially improving efficiency and cost.
📄 Abstract(原文)
High-gain DC–DC Converters Play A Significant Role In Renewable Energy Systems, Electric Vehicles, Battery Charging Systems, Fuel Cells, And Other Modern Power Electronic Applications Where Efficient Voltage Conversion Is Essential. Conventional Boost Converters Often Experience Limitations Such As High Duty Cycle Operation, Increased Switching Losses, Poor Voltage Gain, And Reduced Efficiency Under High Conversion Ratios. To Overcome These Challenges, The Luo Converter Family, Based On The Voltage Lift (VL) Technique, Has Emerged As An Effective Solution For Achieving Higher Voltage Gain With Improved Performance. Over The Years, Several Positive Output Luo Converter Topologies, Including The Elementary, Self-Lift, Re-Lift, Super-Lift, And Multiple-Lift Converters, Have Been Developed To Enhance Voltage Conversion Capability While Maintaining Continuous Input Current And Reduced Output Ripple. This Paper Presents A Comprehensive Comparative Analysis Of Positive Output Luo Converter Topologies By Reviewing Their Operating Principles, Voltage Gain Characteristics, Structural Complexity, Component Requirements, Reported Performance, And Application Suitability. Furthermore, Recent Developments In Converter Modifications, Advanced Control Strategies, And Renewable Energy Applications Are Discussed. A Comparative Assessment Is Provided To Highlight The Advantages, Limitations, And Appropriate Application Domains Of Each Topology. Finally, Current Research Challenges And Future Research Opportunities Are Identified To Support The Development Of Next-generation High-gain DC–DC Converters For Renewable Energy And Electric Vehicle Applications.
🔗 Provenance — このレコードを発見したソース
- Zenodo https://zenodo.org/records/22653207first seen 2026-09-09 04:23:51 · last seen 2026-09-10 04:12:55
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