Mechatronics Practical Demo Technology and Mechatronic Systems - IT Assignment Help

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Assignment Task:

Task:

Introduction

Over the past decades, technology and mechatronic systems continue to be integrated into our daily lives to help improve efficiency in our growing population. Shopping centres are one example where technology has been incorporated to help monitor and manage the flow of shoppers, such as self-service checkouts, information kiosks and carpark monitoring systems. Your task will be to prototype a traffic light system in a shopping centre, to manage the flow of vehicles and pedestrians at the carpark’s exits. You will be using a motor to control a boom gate, which responds to a sensor to detect if a car is present. A push-button is used to monitor the number of pedestrians at the intersection to allow them to cross. An RGB LED will be used to indicate the current state of the system, where its brightness is adjusted based on the lighting in the area. A secure administrator menu will allow timing parameters to be modified while the system is running. This is shown in the diagram below:

Objective

- To familiarise yourself with novice electronic circuit design.

- Apply concepts of Arduino native language coding.

- To familiarise yourself with peripheral sensors and actuator circuits commonly used in mechatronics projects. - Gain experience in interfacing peripheral modules through the Arduino Uno. Administrator Spring 2021: Assignment 3 Mechatronics practical demo. level 3 41099 Fundamentals of Mechatronics Engineering: \

Assignment Overview This assignment consists of a demonstration (20 marks) of the system described, as well as supporting documentation and reflection (10 marks). The Assignment 3 scenario builds upon the previous assignments. To do Assignment 3 well, you will need to understand the following concepts:

• System flow charts and block diagrams, including how your program moves through the different states of the system

• How your motor is powered and controlled by the Arduino

• Basic understanding of the behaviour of a light dependent resistor (LDR), including your choice of resistor to place in series with the LDR

• The difference between passive and active electronic components, how they should be connected and why

• How your code is able to multitask through the use of the Arduino’s millis() function

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