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Designed and construction of automatic quiz buzzer system

 

Table Of Contents


Project Abstract

Abstract
The project focuses on the design and construction of an automatic quiz buzzer system. The system is intended to be used in quiz competitions to facilitate a smooth and fair quiz session. The main aim of this project is to create a reliable and efficient quiz buzzer system that can accurately detect and lock out participants who press the buzzer first. The system is designed to minimize human error and provide a seamless experience for both the participants and the quiz masters. The automatic quiz buzzer system consists of several components including microcontrollers, buzzers, LED indicators, and a control panel. The microcontroller serves as the brains of the system, processing the inputs from the buzzers and controlling the LED indicators to display the status of each participant. The control panel allows the quiz master to start and stop the quiz session, reset the system, and view the scores of the participants. The operation of the system is based on a set of predefined rules that determine how the buzzers are activated and how the participants are locked out after buzzing in. The system is programmed to detect the first buzzer press and lock out the other buzzers to prevent multiple participants from answering the question simultaneously. The LED indicators provide a visual cue to indicate which participant has successfully buzzed in and is eligible to answer the question. The automatic quiz buzzer system is designed to be user-friendly and easy to set up. The buzzers are connected to the control panel via a wired or wireless connection, allowing for flexibility in the setup of the quiz session. The system is powered by a rechargeable battery, making it portable and suitable for use in various settings. Overall, the automatic quiz buzzer system aims to enhance the quiz experience by providing a reliable and efficient way to conduct quiz competitions. By automating the buzzer activation and participant lockout process, the system minimizes the potential for human error and ensures a fair and competitive quiz environment. The project showcases the integration of hardware and software components to create a functional and user-friendly quiz buzzer system that meets the needs of quiz organizers and participants alike.

Project Overview

 1.0                                                                        INTRODUCTION

1.1         BACKGROUND OF THE STUDY

  Quiz buzzers are used often at places like educational institutions where it is required for game shows and also in live quiz competitions broadcasted via television. A quiz buzzer allows any user to press the switch quickly in response to a question posed during competitions that are conducted in schools and colleges. The pressed switch gives a buzzing sound or alarm for some duration of time and the reaction time is very small. Buzzer can also be used in different applications such as annunciator panels; electronic metronome microwave oven and other house hold application.

Conventional systems require human intervention to decide which team has pressed the button and this system can be erroneous and even biased. Another problem arises when two members pressed the button at a negligible interval and it is difficult to guess who has pressed the buzzer first. Here we designed an automatic quiz buzzer system such that when more than one team presses the buzzer, the delay is accurately taken into account and number is displayed. We build the circuit using a microcontroller which scans the input from push buttons and displays the corresponding number on a display device. It is a simple circuit with minimum number of components and

sans any complexities. The microcontroller takes into account the time delay between two buttons and the accurate number is displayed. Even though this system is only for 8 teams, more teams can be added by using another set of 8 push buttons.

 1.2         AIM AND OBJECTIVE

  The aim of this project is to designed and construction of automatic quiz buzzer system such that when more than one team presses the buzzer, the delay is accurately taken into account and number is displayed.

1.3         JUSTIFICATION OF THE STUDY

 The circuit is a simple embedded system with a set of 8 push buttons being the input devices, a microcontroller as the controller and the output devices being a buzzer and a display. The whole operation is carried out by a microcontroller through a program written in C language and dumped inside the microcontroller. When one of the buttons is pressed, the buzzer starts ringing and the corresponding number is displayed on the liquId crystal display.

  A quiz buzzer circuit can be implemented in several ways with the use of various controllers. These controllers include 555 timer and microcontrollers. The 555 timer based buzzer circuit is a simple and low-cost device wherein the time duration is determined by the resistor

and capacitor value (RC constant). A microcontroller based buzzer circuit is a programmable timer wherein the time duration can be varied by changing the program code of the microcontroller.
 

1.4          SCOPE OF THE STUDY

  The whole design process involves six steps. First step requires designing the circuit; the second step is drawing the circuit on any software like Proteus. The third step involves writing the code using high level language or assembly language and then compiling it on a software platform like Kielu Vision. The fourth step is dumping the code in microcontroller and fifth step is simulating the circuit.

The circuit involves using five major components – a Microcontroller, 8 SPST push buttons, a buzzer and liquid crystal display. The microcontroller used in this case is AT89C51, an 8 bit microcontroller manufactured by Atmel.

   Reset Circuit Design

 The reset resistor is selected such that the voltage at the reset pin, across this resistor is at minimum of 1.2V and the width of the pulse applied to this pin is greater than 100ms. Here we select a resistor of 100K ohms and a capacitor of 10uF.



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