Shinta Kisriani.  INTRODUCTION  THEORY LITERATURE  METHOD DESIGN  ANALYSIS & RESULT  CONCLUSION  FUTURE WORK.

Slides:



Advertisements
Similar presentations
Chapter 7 Section 1: What do you think of when we say waves?
Advertisements

Indian Institute of Technology Hyderabad ID 1035 Independent Project Bidirectional Visitor Counter Prepared and presented by: Rakshit Singla (CS12B1029)
Index  INTRODUCTION  HARDWARE DESCRIPTION  BLOCK DIAGRAM  COMPONENT LIST  ADVANTAGES AND APPLICATIONS  CONCLUSION.
Indian Institute of Technology Hyderabad AUTOMATIC ROOM LIGHT CONTROLLER by V Swetha B Deepthi Priya as.
Silly String Shooter Sean Hicks Dongpu Jin ELEC 307 Project 1 Instructor: Alvaro Pinto March/14/2011.
Introduction Automatic dust-cart is occured from two part. First part is car, and second part is arm. First part is car. For this part, robot follows black.
Signal, Instruments and Systems Project 5: Sensor accuracy in environmental sensor networks.
NorCal Tech 2005 Technical Conference
Motion detector ​ Bikesh Shrestha ​ Ari Rajamäki.
Basics of Sensors. A sensor is a device which is used to sense the surroundings of it & gives some useful information about it. This information is used.
Sponsor –UROP –ZWORLD Corp. –W. M. Berg Corp. Advisor –Professor David J. Reinkensmeyer.
INTUITIONISTIC FUZZY MULTILAYER PERCEPTRON AS A PART OF INTEGRATED SYSTEMS FOR EARLY FOREST-FIRE DETECTION Sotir Sotirov Prof. Asen Zlatarov University,
FEATURE EXTRACTION FOR JAVA CHARACTER RECOGNITION Rudy Adipranata, Liliana, Meiliana Indrawijaya, Gregorius Satia Budhi Informatics Department, Petra Christian.
Athletic Field Marking Device Anthony Cortese, Ryan Crump, Matthew Lawler, Patrick Shaughnessy (Team Leader), John Sudia.
Active Display Robot System Using Ubiquitous Network Byung-Ju Yi Hanyang University.
Robotic Duck Douglas Durham & Ashley Brown, University of Georgia Introduction Materials Procedure Standards Addressed Reflections Schools often use STEM.
Smart transmitters.
Sensors Cassandra, Gayathri, Rohan, Patrick. -Many distractions while driving -Want to dramatically reduce accidents that occur -Try to figure out ways.
Traffic Monitoring System using Acoustic Sensors Yuping Dong May 14, 2008.
Author : Ng Thomas ( ) Under the Guidance of: Iwan Njoto Sandjaja, MSCS. Rudy Adipranata, M.Eng.
Tracking with Unreliable Node Sequences Ziguo Zhong, Ting Zhu, Dan Wang and Tian He Computer Science and Engineering, University of Minnesota Infocom 2009.
1 of 28 A design study of a Cryogenic High Accurate Derotator.
TAUCHI – Tampere Unit for Computer-Human Interaction Visualizing gaze path for analysis Oleg Špakov MUMIN workshop 2002, Tampere.
Patch Based Mobile Sink Movement By Salman Saeed Khan Omar Oreifej.
ENERGY-EFFICIENT FORWARDING STRATEGIES FOR GEOGRAPHIC ROUTING in LOSSY WIRELESS SENSOR NETWORKS Presented by Prasad D. Karnik.
Measurement and Control. Control Systems A control system usually consists of a processor, a control program, interfaces and a device under the processor's.
Phong Le (EE) Josh Haley (CPE) Brandon Reeves (EE) Jerard Jose (EE)
Lecture I Sensors.
AUTOMATIC RAILWAY GATE CONTROLLING AND TRACK SWITCHING
Student Name USN NO Guide Name H.O.D Name Name Of The College & Dept.
David Wild Supervisor: James Connan Rhodes University Computer Science Department Eye Tracking Using A Simple Webcamera.
CONTENTS: 1.Abstract. 2.Objective. 3.Block diagram. 4.Methodology. 5.Advantages and Disadvantages. 6.Applications. 7.Conclusion.
Robotics in Education How robotics can help students engage in STEAM learning.
ECE477 Senior Design Android street car Team 12 Libo Dong 1.
MULTI TOUCH. Introduction Multi-touch is a human-computer interaction technique. Consists of a touch screen as well as software that recognizes multiple.
BANDAGE SIZE NON ECG HEART RATE MONITOR USING ZIGBEE WIRELESS LINK Guided by,Presented by, Ms. Geo. P.G Jeevan.K.Noble Asst.Prof., ECE Dept.S7, ECE-A.
Infrared IR Sensor Circuit Diagram and Working Principle.
S0LAR AUTOMATIC RAILWAY TRACK CRACK DETECTING VEHICLE
SECURITY SYSTEM USING PIR. OVERVIEW  Introduction of Embedde system  Aim of the project  Current scenario  Limitations of Current scenario  Futurescope.
Simple Water Level Controller Circuit with Microcontroller and Alarm.
UNIVERSITY OF MINES AND TECHNOLOGY, TARKWA
Automatic Railway Gate Control System
AUTOMATIC NUMBER PLATE RECOGNITION SYSTEM
UNIVERSITY OF NAIROBI Department of Electrical & Electronic Engineering A FOUR CHANNEL-D MICROCONTROLLER BASED DATA ACQUISITION SYSTEM WITH A SERIAL INTERFACE.
INSTRUMENT CONTROLLED MICROSCOPY Mason Jellings, Justin Gearing, Sarah Reichert, John Byce Client: Dr. Joshua Medow Advisor: Professor Thomas Yen Introduction.
Radar Seminar On Submitted To: Submitted By:
TThe main purpose of this project is to provide cost effective safety measure at level cross TThis project is a part of complete system for monitoring.
MICROCONTROLLER BASED INDUSTRIAL SECURITY SYSTEM.
Table of contents INTRODUCTION Background Problem Statement Scope of The Research Objective Method DESIGN SYSTEM TESTING AND EVALUATION CONCLUSION.
Mingze Zhang, Mun Choon Chan and A. L. Ananda School of Computing
Self-Navigation Robot Using 360˚ Sensor Array
INTRODUCTION TO ELECTRONIC INSTRUMENTATION
EYE TRACKING TECHNOLOGY
Weather Cloud Detection
XBee Based Motor Control for Farmers
Aim Of The Project To implement the obstacle avoidance and Zigbee control functions for Omni directional mobile robot.
Measurements & Instrumentation – Module 3
ARDUINO LINE FOLLOWER ROBOT
Automatic Railway Gate Control System
PLC based automated coal crushing and conveyor system
Review and Ideas for future Projects
Saving Lighting Energy with the BBC micro:bit
Abstract In this paper, an improved defogging algorithm for intelligent transportation system based on image processing is proposed. According to the.
The application of an atmospheric boundary layer to evaluate truck aerodynamics in CFD “A solution for a real-world engineering problem” Ir. Niek van.
Scientific Method Vocabulary.
Elecbits.
Danger Prediction by Case-Based Approach on Expressways
Presentation Outline Science Fair.
Toy Train Safety Control System
Presentation transcript:

Shinta Kisriani

 INTRODUCTION  THEORY LITERATURE  METHOD DESIGN  ANALYSIS & RESULT  CONCLUSION  FUTURE WORK

 Background The existence of sensor technology facilitate human to do something dangerous without directly having to do it, like extinguish fire. Besides that, sensor technology facilitate human in doing an observation in science. As it is automatic, sensor technology makes human be able to save energy and time. Sensor can work like human senses, even it is more accurate and faster than human senses. That’s why, the sensor technology is mostly used research.

 Problem Steatment The method used on the available application is a reflection method. The way of reflection method is emitting infrared rays which is reflected to the object, so infrared ray can be receive.On this research used method to determine the direction of object. The method used to determine object on this research is called pointing object method. As the problem on this research,namely : 1. What is the method object pointing using a back tracking algorithm can be used to determine the direction of the object with infrared sensors? 2.Whether in accordance with theory the development of methods to object pointing using back tracking algorithm can be applied to an object capture application?

 The Purpose The purpose of this research include :  1. Proving that the method object pointing using back tracking algorithm with infrared sensors can be used to obtain the direction object.  2. In accordance with the theory object pointing method can be implemented on a simple application of object capture.

 Scope Of this Research On this research is the beginning of the creation of a system using a object pointing method with infrared sensor, hence on this research were given a limit, namely : 1. Testing infrared sensor to obtain data in the from of emitting angle IR transmitter to use in developing methods. 2. Making algorithms to pointing object method. 3. Testing pointing object manually. 4. Analyzed testing and calculation data.

 Infrared Sensor divided into 2 classification, those are : 1. Passive 2. Active  IR transmitter  IR receiver

 Basically the camera has the characteristics and differences in the shooting angle, namely as follows: 1. Straight Angle 2. Low Angle 3. High Angle

1. Straight Angle The camera angles are normal. Usually used in the making of objects of the picture remains. 2. High Angle Angle camera provides a view from the top down. Ordinary angle was used in the portrayal of the situation. The location of the camera position using the high angle higher than the object. The recommended angle not exceeding 45 degree, so as not to cause effects that are excessive. The ideal angle is between degree 3. Low Angle Camera angle on low-angle condition provides a view from the bottom / low in the direction of the object. Often used to put pressure on a person’s character or object.By placing the camera angle is lower than the object. The recommended angle is 45 degree. Meanwhile, to get the effect ideally beautiful object isthe angle degree.

 High Angle  Low Angle

Block Diagrams Testing How Infrared sensor Works

The observation result, manually testing algorithm and result analysis from the testing can be obtained several conclusions as follows : 1. The design method of an object pointing using a backtracking algorithm can be used in infrared sensors. 2. The sensors can move based on infrared rays as the input signal. The sensor move finds the Infrared rays signal with following a signal which is transmitted infrared rays. 3. In accordance with the theory about taking pictures with cameras and compared with the results of this study can be concluded that the method of pointing this object can be used to capture object. In accordance with the theory about taking pictures with cameras and compared with the results of this study can be concluded that the method of pointing this object can be used to object capturing application.

 This observation are still many shortcomings and it has not become a complete system. Therefore,at the suggestion section on outlined a road map for a system that so from the results of this study, namely: 1. Testing methods used in manual (already done in this observation) 2. Testing method of automatically using the motor. Motor that can be used is the Stepper motor. The process of testing using this motor to obtain calibration data to determine the accuracy of motor movement. 3. Tests on the obstacles. The test is conducted to determine the influence of anything that may interfere with the infrared signal transmission to the recipient. 4. Find the maximum and minimum range of infrared rays 5. After doing the steps to obtain the data, then for the system to be implemented in applications using the additional microcontroller device. Microcontroller is

THANK FOR YOUR ATTENTION