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電気自動車:持続可能なモビリティのための工学的解決策

ELECTRIC VEHICLES: ENGINEERING SOLUTIONS FOR SUSTAINABLE MOBILITY (原題)

Dr NIVEDITA S PADOLE, Mr TALASILA VENKATESH, Dr GEETHA AIYYANARAPAN, Mr PRAVIN LAXMAN GHOLAVE, Dr P U POORNIMA

Zenodoプレプリント2026-08-22#EV・輸送対象セクター: automotive
DOI: 10.5281/zenodo.22202347
原典: https://zenodo.org/records/22202347

🤖 gxceed AI 要約

日本語

本書は、電気自動車(EV)への移行を技術・環境・経済・社会の観点から包括的に解説する。パワートレイン、バッテリー技術、充電インフラ、スマートグリッド統合、ライフサイクル評価などを扱い、インドを含む新興国の導入課題と機会に焦点を当てる。持続可能なモビリティ実現のための工学的・政策的指針を提供する。

English

This book provides a comprehensive overview of the transition to electric vehicles (EVs), covering powertrains, battery technology, charging infrastructure, smart-grid integration, and lifecycle assessment. It emphasizes the challenges and opportunities for EV adoption in emerging economies, particularly India, and offers engineering and policy guidance for sustainable mobility.

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GX文脈では、EV普及は運輸部門の脱炭素化に直結し、SSBJ開示やカーボンプライシングとも関連する。本書は技術基盤の理解に有用だが、日本固有の政策や市場動向には踏み込んでおらず、国内実務への直接的な示唆は限定的。

In the global GX context

Globally, this book aligns with the push for transport decarbonization under TCFD/ISSB frameworks, offering a broad technical foundation for EV transition. Its focus on India provides a useful comparison for emerging markets, but it lacks novel empirical data or policy analysis that would significantly advance global disclosure scholarship.

👥 読者別の含意

🔬研究者:EV技術の全体像を俯瞰し、研究の位置づけを確認するための入門的参考書として有用。

🏢実務担当者:EV関連事業の技術的理解を深めるための基礎資料として活用可能。

🏛政策担当者:新興国におけるEV政策立案の背景知識として参考になるが、具体的な政策提言はない。

📄 Abstract(原文)

The dawn of the 21st century has brought humanity to a critical turning point, compelling the global community to confront the growing challenges of climate change and the finite availability of fossil fuels. Among all sectors, transportation—once a major driver of industrial development and economic growth—has emerged as a key area requiring transformative change. Electric Vehicles: Design, Technology, and Solutions for Sustainable Mobility is conceived in response to this urgent need. The book provides a comprehensive overview of the rapidly evolving electric mobility landscape, examining the transition not simply as a shift in energy sources but as a fundamental transformation of the automotive ecosystem. For more than a century, internal combustion engines have shaped transportation systems, influenced urban development, and supported economic expansion. However, their widespread use has also contributed significantly to environmental degradation, greenhouse gas emissions, and dependence on finite energy resources. The current transition toward vehicle electrification represents a major technological shift that brings together disciplines such as electrical and mechanical engineering, materials science, energy systems, urban planning, and public policy. This book aims to connect these diverse perspectives by combining the technical principles behind electric vehicles with their environmental, economic, and societal implications. The book begins by presenting the history and evolution of transportation technologies, with particular emphasis on the early development, decline, and modern resurgence of electric propulsion. It then explores the fundamental architecture of contemporary electric vehicles, including electric powertrains, motor technologies, power electronics, control systems, and Battery Management Systems. Particular attention is given to battery technology, which remains one of the most important components of electric mobility. The discussion covers established lithium-ion technologies as well as emerging developments such as solid-state batteries, advanced energy-storage systems, and rapid-charging technologies, offering insights into the future direction of electric vehicle energy systems. The transition to electric mobility extends beyond the vehicle itself and requires a reliable and intelligent supporting infrastructure. Accordingly, the book examines charging technologies, charging networks, smart-grid integration, and the role of renewable energy in supporting sustainable transportation. It also considers emerging developments at the intersection of electric mobility with autonomous driving, connected transportation, shared mobility, and smart-city development. In addition, lifecycle assessment and carbon-emission analysis are discussed to provide a broader understanding of the environmental benefits and limitations associated with electric vehicles. A significant focus is placed on the global development of electric mobility, considering the different strategies and adoption pathways followed by developed and emerging economies. Particular attention is given to India, where rapidly evolving transportation needs, infrastructure development, energy availability, and government policies create both unique challenges and significant opportunities for electric vehicle adoption. Such regional perspectives demonstrate the importance of developing mobility solutions that reflect local economic, technological, environmental, and social conditions. Despite the considerable potential of electric vehicles, sustainable mobility continues to face challenges, including the availability of critical battery materials, manufacturing costs, charging infrastructure, battery recycling, energy requirements, and consumer concerns regarding driving range and charging time. Rather than viewing these issues as barriers to progress, this book approaches them as opportunities for technological innovation, policy development, and interdisciplinary research. As transportation systems move toward greater electrification, connectivity, automation, and sustainability, the need for informed technological and strategic decision-making will continue to grow. This book is intended to serve as a valuable reference for engineers, researchers, students, policymakers, industry professionals, and anyone interested in the future of sustainable transportation. By bringing together technological developments, environmental considerations, infrastructure requirements, and policy perspectives, it seeks to provide both a roadmap and a source of inspiration for building a cleaner, smarter, and more sustainable mobility ecosystem.

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gxceed は公開メタデータに基づく研究支援データセットです。要約・翻訳・解説は AI 支援で生成されています。 最終的な解釈・検証は利用者が原典資料に基づいて行うことを前提とします。