Overview
The development of narrow tilting three-wheel vehicles has introduced innovative solutions for improving urban mobility by combining the maneuverability of motorcycles with the enhanced stability and practicality of multi-wheel platforms. As these vehicles become increasingly relevant for sustainable transportation, advanced control strategies are essential to ensure safe handling, dynamic stability, and reliable performance under varying operating conditions. Dynamic Stability Control of Narrow Tilting Three-Wheel Vehicles provides a comprehensive introduction to the engineering principles, vehicle dynamics, and control methodologies that support the design and operation of narrow tilting three-wheel vehicles.
The book explores the fundamental concepts of vehicle dynamics, introducing readers to the mechanical behavior of three-wheel vehicle configurations, tilting mechanisms, steering characteristics, suspension systems, tire-road interaction, and dynamic response during acceleration, braking, and cornering. It explains how vehicle geometry, mass distribution, and operating conditions influence stability while establishing the theoretical foundation required to understand advanced vehicle control systems.
A central focus is placed on dynamic stability control and the engineering techniques used to maintain vehicle balance and improve handling performance. The text discusses the principles of control engineering, dynamic modeling, feedback control, state estimation, stability analysis, and motion control as they relate to narrow tilting vehicles. Readers gain insight into how control algorithms, sensors, actuators, and electronic control systems work together to monitor vehicle behavior and enhance stability during both routine operation and dynamic maneuvers.
The book further examines mathematical modeling and simulation techniques used to analyze vehicle performance under a range of operating conditions. Topics such as multibody dynamics, lateral stability, roll dynamics, yaw control, tilt coordination, trajectory tracking, steering control, suspension behavior, and performance evaluation are presented within the broader framework of automotive engineering. The discussion also introduces optimization techniques, system validation, controller performance assessment, and engineering trade-offs associated with designing reliable stability control systems.
Designed for undergraduate and graduate students, researchers, automotive engineers, mechanical engineers, control systems specialists, educators, and transportation technology professionals, this volume serves as both an academic reference and a practical introduction to advanced vehicle dynamics. The material emphasizes established engineering principles and broadly applicable methodologies rather than proprietary vehicle platforms or manufacturer-specific technologies, making it suitable for university coursework, research laboratories, and professional development.
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Details
- ISBN-13: 9781962116800
- ISBN-10: 1962116808
- Publisher: Shark Nail
- Publish Date: August 2026
- Dimensions: 9 x 6 x 0.38 inches
- Shipping Weight: 0.54 pounds
- Page Count: 176
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