set the value for mass spring damper system m=3.6; k=400; c=100; use this parameter mass (m) = 3.6 kg stiffness of spring (k) = 400 N/m damping factor of damper (c) = 100 Ns/m force (f) motion sensor =0 two references used motion sensor unit step scope solver configuration simulink to ps converter ps…
Mughilan kg
updated on 27 Dec 2022
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Read more Projects by Mughilan kg (12)
Project-1: Powertrain for aircraft in runways
PART-A 1.) LIST OUT THE TOTAL WEIGHT OF VARIOUS TYPES OF AIRCRAFTS: The aircraft gross weight (also known as the all-up weight and abbreviated AUW) is the total aircraft weight at any moment during the flight or ground operation. An aircraft's gross weight will decrease during a flight due to fuel…
21 Jul 2023 05:47 AM IST
Project 1
Design a battery pack for a car of roughly 150 Kw with 120 V. Use a 3500 mAh 3.6V nominal NMC chemistry cell. A battery management system (BMS) is said to be the brain of a battery pack. The BMS is a set of electronics that monitors and manages all of the battery’s performance. Most importantly, it keeps the battery from…
08 Mar 2023 03:19 AM IST
Final Project: Electric Rickshaw modelling
AIM : Design of an Electric Rickshaw using MATLAB Simulink. ABSTRACT : In this project, we going to build the MATLAB model of the ELECTRIC RICKHAEW by using a PM brushed type DC motor and a suitable Lithium-Ion battery for the motor. Before that, we will know about what is Electric RICKHAEW, how it works, and its benefits…
03 Mar 2023 12:59 PM IST
Project-1: Modelling an electric Car with Li-ion battery
Create a MATLAB model of an electric car which uses a lithium-ion battery and a suitable motor. Choose suitable blocks from Simscape or Powertrain block set. Implement the vehicle speed control usinthe g PI controller and generate brake and accelerator commands. Avoid using readymade driver block for speed control. Prepare…
12 Feb 2023 04:46 AM IST
Final Project: Design of an Electric Vehicle
1.) MATLAB model of the electric car which uses a battery and a DC motor system level configuration Model parameters Results Conclusion every parameter and construction and structure is provided in detail this the model of an electric vehicle, which contains the drive cycle and power converter,…
11 Feb 2023 07:16 AM IST
Week-11 Challenge: Braking
1.) The braking energy formula is as follows : Benergy=12⋅m⋅(vi2-vf2)">benery=1/2⋅m⋅(v2i−v2f) Where is the braking energy is Joules (J), m">m is the mass in kg , vi">viis the initial velocity of the vehicle in m/s and vf">vf is the final velocity of the vehicle in m/s. The UDDS cycle is used for this particular calculation.…
13 Jan 2023 04:49 AM IST
Week-7 Challenge: DC Motor Control
1.) A) This model shows the simulation of an H-bridge used to generate a chopped voltage and to control the speed of a DC moto ere the power BJT switches act as chopper & by varying the duty cycle of the switches the speed of DC motor is controlled. Description: The Bipolar Junction Transistor (BJT)…
11 Jan 2023 07:12 AM IST
Week-6 Challenge: EV Drivetrain
1.A power converter electrical circuit that changes the sectric energy from one term into the desired form optimized for the specime load. A converter may do one or more functions and are an output. A device that increases or decreases this voltage (AC or DC) of a power source depending on appication A converter…
10 Jan 2023 12:09 PM IST
Week-4 Challenge WOT Condition Part-2
1. Mapped Model (Static model): The mapped model uses a steady-state lookup table (which is nothing but a set of predefined data sets) to characterize the engine/motor and generator's performance. It is generally used for quasi-steady-state simulations. Mapped Cl engine model using power, air mass flow, fuel flow,…
06 Jan 2023 07:31 AM IST
Week-3 Challenge: ADVISOR Tool
#1) ADVISOR, NREL'S Advanced Vehicle Simulator, is a set of model, data, and script text files for use with MATLAB and Simulink. It is designed for rapid analysis of the performance and fuel economy of conventional, electric, and hybrid vehicles. ADVISOR also provides a backbone for the detailed simulation and analysis…
05 Jan 2023 06:14 AM IST
Project - Position control of mass spring damper system
set the value for mass spring damper system m=3.6; k=400; c=100; use this parameter mass (m) = 3.6 kg stiffness of spring (k) = 400 N/m damping factor of damper (c) = 100 Ns/m force (f) motion sensor =0 two references used motion sensor unit step scope solver configuration simulink to ps converter ps…
27 Dec 2022 04:54 AM IST
Project - Data Handling and Interpolation
I have completed the project that has been provied
05 Nov 2022 09:55 AM IST