- DAI504 Human-AI Interaction (Y/651/0608) Assignment Brief 2026
- DAI503 Natural Language Processing (T/651/0607) Assignment Brief 2026
- Qualifi Level 5 DAI501 Visualisation (M/651/0605) Assignment Brief 2026
- DAI406 Artificial Intelligence Ethics (L/651/0604) Assignment Brief 2026
- DAI404 Big Data Management (J/651/0602) Assignment Brief 2026
- DAI402 Mathematical Foundations for Machine Learning (F/651/0600) Assignment Brief 2026
- DAM101 Programming and Algorithms Final Assessment 2026 | City St George’s
- HRM09105 Leadership in Organisations Assessment Brief 2026 | ENU
- Research Methods for Business and Psychology Assessment Brief 2026
- SWE4201 Introduction to Software Development Assignment Brief 2026
- 7CO03 Personal Effectiveness, Ethics and Business Acumen Assignment Brief 2026
- MLA725 Developing Sustainable Energy Assessment Brief 2026 | MLA College
- BMA4002 Economics and Globalisation Assignment 1 Brief 2026 | BSU
- CMI Unit 716 Strategic Approaches to Mental Health and Wellbeing (Y/617/6873) Assignment Brief 2026
- CMI Unit 714 Personal and Professional Development for Strategic Leaders (Y/617/6873) Assignment Brief 2026
- CMI Unit 712 Strategic Management Project (A/617/6871) Assignment Brief 2026
- CMI Unit 710 Marketing Strategy (J/617/6870) Assignment Brief 2026
- CMI Unit 708 Strategic Risk Management (L/617/6868) Assignment Brief 2026
- CMI Unit 706 Finance for Strategic Leaders (F/617/6866) Assignment Brief 2026
- MKT09401 International Marketing Assignment Brief 2026 | ENU
NHA2414: Draw a free body diagram (FBD) and derive the equation of motion of m with y(t) as the input, and obtain the transfer function: Dynamic Analysis and Control Assignment, UOH, UK
| University | University of Huddersfield (UOH) |
| Subject | NHA2414: Dynamic Analysis and Control |
Task 1
The quarter-car model of a vehicle suspension and its free body diagram is shown in Figure 1. In this simplified model, the masses of the wheel, tire, and axle are neglected, and the mass m represents one-fourth of the vehicle mass. The spring constant k models the elasticity of both the tire and the suspension spring. The damping constant c models the shock absorber. The equilibrium position of m when y=0 is x=0. The road surface displacement y(t) can be derived from the road surface profile and the car’s speed.
- Draw a free body diagram (FBD) and derive the equation of motion of m with y(t) as the input, and obtain the transfer function.
If assume:
m=250 kg
k=10000, 30000, 50000 N/m
c=1000, 2000, 3000 N.s/m
- Plot magnification ratio vs frequency ratio (r=0-4) diagrams for the parameters given above (you can draw the three curves in one diagram for three different k values and do the same for the three c values as well).
- Use the derived transfer function to model the system and plot the step response for the system by Matlab or Simulink.
Task 2
A common example of base excitation is caused by a vehicle moving along a bumpy road surface as shown in Figure 2. This motion produces a displacement input to the suspension system via the wheels. The second task is to calculate and draw a displacement transmissibility ratio diagram for a quarter car with 250 kg, the spring constant is 10000 N/m, but varying damping constant to be 1000, 2000, 3000, 5000, and 10000 N.s/m. If the vehicle driver wishes to reduce the vehicle’s body displacement, what suggestion you could make for the driver and why?
Are You Looking for Answer of This Assignment or Essay
Do you need help with NHA2414: Dynamic Analysis and Control assignments? Don’t look further and take our pay for college assignments service at Students Assignment Help UK. our executives are available 24*7 hours to provide appropriate solutions on engineering assignments at a market price.




