К содержимому
learnspaceYOUR NEXT CHAPTER
ПРОСТРАНСТВО ОБУЧЕНИЯ
ГлавнаяКаталог курсовМоё обучениеCoursera

Знания без границ

Учитесь у лучших университетов и компаний мира.

Открыть Coursera
Интеграция
Пространство университета
Моё пространствоСтраница курса
↵
ЯЛичный кабинетСтудент
© 2026 LearnSpaceКаждый день — возможность узнать больше.Помощь
Introduction to Vehicle Dynamics · LearnSpace
Назад в каталог
courseraИнженерия

Introduction to Vehicle Dynamics

Курс от Packt
Средний≈ 13.8 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

This course features Coursera Coach! A smarter way to learn with interactive, real-time conversations that help you test your knowledge, challenge assumptions, and deepen your understanding as you progress through the course. Explore the fundamentals of vehicle dynamics and gain the skills to analyze and optimize vehicle performance, handling, and safety. This course introduces the vehicle as a system, detailing the driver-vehicle relationship, and explaining how dynamics influence real-world applications from everyday cars to high-performance racing vehicles. You’ll develop a strong foundation in physics, mechanics, and tire behavior to understand the forces acting on vehicles under various conditions. The course begins with vehicle engineering basics, including weight distribution, degrees of freedom, and suspension principles. You’ll study stationary and dynamic loads, learn how tires generate forces, and examine traction, rolling resistance, and slip ratios. With these fundamentals, the course builds toward driving and braking dynamics, demonstrating how engine torque, braking systems, and friction interact to control motion. Next, the curriculum explores suspension design, wheel location, and key suspension parameters, before diving into cornering and ride dynamics. You’ll analyze steering geometry, slip angles, high-speed turning, and roll mechanisms. Each module combines theoretical insights with practical examples, helping you connect classroom concepts to real vehicles and performance testing scenarios. Ideal for automotive engineers, motorsport enthusiasts, and students of mechanical engineering, this intermediate-level course assumes basic physics and mathematics knowledge. It benefits anyone seeking to understand vehicle behavior, improve handling, or optimize designs for safety and performance. By the end of the course, you will be able to analyze vehicle loads, design suspension systems, evaluate tire performance, and apply cornering and ride dynamics principles to improve vehicle handling and stability.

Навыки, которые вы освоите

MechanicsVibrationsPhysicsMechanical EngineeringProbability DistributionSimulationsControl SystemsEngineering CalculationsEngineering AnalysisSystems DesignMarket DynamicsDesignSimulation and Simulation SoftwareStructural AnalysisMathematical ModelingMechanical DesignAnalysisTorque (Physics)

Программа курса

8 модулей · 56 учебных материалов

01Introduction7 материалов

Introduction

Formula 1 - Importance of DynamicsВидеоFull Course ResourceЧтениеWhy Study Vehicle DynamicsВидеоVehicle as a System, Driver-Vehicle RelationshipВидео

Учитесь у экспертов

Packt - Course Instructors

Преподаватель курса

Introduction to Vehicle Dynamics
В каталоге вашей программы

Инвестируйте в себя

Новые знания — в удобное для вас время.

Начать на Coursera

Обучение откроется на Coursera
в новой вкладке

Обучение на Coursera

≈ 13.8 ч

8 модулей

Язык: Английский

Часть программы вашего университета
How Is Vehicle Dynamics Studied and ImplementedВидео
Learning Approach to Vehicle Dynamics and Scope of CourseВидео
Domains of Vehicle DynamicsВидео
02Vehicle Engineering Basics9 материалов

Vehicle Engineering Basics

Systems of a Vehicle and Their InfluenceВидеоWeight Distribution and Vehicle ArchitectureВидеоDegrees of Freedom, Coordinate SystemsВидеоTransformation and Definition of Euler AnglesВидеоVehicle Attitude and Body Slip AngleВидеоConcept of Sprung MassВидеоFundamental Concepts of PhysicsВидеоCore Concepts of Vehicle Dynamics and Coordinate SystemsDIALOGUEVehicle Engineering Basics - AssessmentЗадание
03Loads on Vehicles4 материалов

Loads on Vehicles

Stationary Vehicle LoadsВидеоDynamics LoadsВидеоVehicle Loading and Forces: Static, Dynamic, and Aerodynamic LoadsDIALOGUELoads on Vehicles - AssessmentЗадание
04Mechanics of Tire7 материалов

Mechanics of Tire

Construction and SignificanceВидеоMaterial Behavior - RubberВидеоLoad Distribution and Force GenerationВидеоRolling ResistanceВидеоOther EffectsВидеоUnderstanding Pneumatic Tire Mechanics and Vehicle DynamicsDIALOGUEMechanics of Tire - AssessmentЗадание
05Driving and Braking Dynamics7 материалов

Driving and Braking Dynamics

Thrust at the Tire - TractionВидеоAnalysis - Dynamics Equations - Braking and DrivingВидеоHow Is Engine Torque Converted to ThrustВидеоSlip Ratio and FrictionВидеоBrakes Which Don't LockВидеоUnderstanding Traction, Slip Ratio, and Braking DynamicsDIALOGUEDriving and Braking Dynamics - AssessmentЗадание
06Suspension Design7 материалов

Suspension Design

What Is the Function of Suspension SystemВидеоBasic Concepts in Wheel LocationВидеоSuspension Parameters Part 1ВидеоSuspension Parameters Part 2ВидеоSuspension Parameters Part 3ВидеоUnderstanding Suspension System Kinematics and Design Trade-offsDIALOGUESuspension Design - AssessmentЗадание
07Cornering Dynamics7 материалов

Cornering Dynamics

Low Speed Turning and Steering GeometryВидеоCornering Slip Angle and Moments at TireВидеоHigh Speed Turning Part 1ВидеоHigh Speed Turning Part 2ВидеоMechanism of Roll and Its EffectsВидеоLateral Vehicle Dynamics: Steering and HandlingDIALOGUECornering Dynamics - AssessmentЗадание
08Ride Dynamics8 материалов

Ride Dynamics

Intro to Ride DynamicsВидеоEquations of Damping Ratio Part 1ВидеоEquations of Damping Ratio Part 2ВидеоShock AbsorbersВидеоWheel Rate and Perception of RideВидеоRide Dynamics - AssessmentЗаданиеFull Course Practice AssessmentЗаданиеFull Course AssessmentЗадание