Have you ever wondered why two vehicles with nearly identical specifications can perform so differently once they're actually on the road? Or why an engineer working on batteries needs to understand thermodynamics, and why a control software developer needs to understand tire chemistry? If you've asked questions like these — or if you're the one expected to answer them — this book was written for you.
Vehicle energy management isn't a single subject. It's the point where mechanical engineering, electrochemistry, control software, thermal physics, economics, and regulatory policy all collide, usually on a deadline. Most engineers enter this field through one narrow door — combustion, batteries, control systems — and spend years slowly discovering how much their decisions depend on what's happening in every other department. This book is designed to shortcut that process.
So what will you actually find inside?
You'll start with the physics that governs everything else — how energy actually moves through a vehicle, where it gets lost, and why. From there, you'll work through combustion efficiency and modern turbocharging strategy, the real engineering behind electric motors and power electronics, and the genuinely difficult trade-offs involved in battery pack design, where range, cost, and long-term durability constantly pull in different directions. You'll get a clear, honest look at hybrid architecture, thermal management, and the control strategies — from simple rule-based logic to machine learning — that increasingly determine how efficient a vehicle really is.
But this book doesn't stop at the vehicle's edge. You'll also work through charging infrastructure and the standards battles still playing out around it, fleet-level economics and total cost of ownership, cybersecurity risks in increasingly connected vehicles, alternative fuels and their genuine limitations, and the full lifecycle footprint of manufacturing, operating, and eventually recycling a vehicle. Every chapter includes real case studies and worked examples, not just theory — because trade-offs only make sense once you've seen how they play out in practice.
Who is this for?
If you're a working automotive engineer looking to build genuine fluency outside your own specialty, a student trying to understand how the different pieces of this industry actually fit together, or a technical professional moving into fleet management, energy strategy, or regulatory affairs, this book was built with you specifically in mind. It assumes you're capable and curious — it doesn't talk down to you, and it doesn't oversimplify problems that are genuinely complicated.
What makes this different from the dozens of other technical books competing for your attention?
Most resources cover one technology in isolation — batteries, or combustion, or software — and leave you to figure out how they connect on your own. This book was written specifically to close that gap, treating vehicle energy management as one connected discipline rather than a pile of separate subjects, because that's genuinely how the best engineers in this field actually think and work.
If you're ready to stop guessing at how the pieces fit together, and start seeing the whole system the way the engineers who build it do — this is where you start.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Vendeur : California Books, Miami, FL, Etats-Unis
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