Development of an indoor tracking system
In the recent years, there has been an influx in the needs for indoor positioning and navigation across various industries. In this project, the aim is to implement a low cost and efficient solution based on current positioning technology namely using ZigBee along with the Arduino microcontroller. I...
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sg-ntu-dr.10356-602102023-07-07T17:32:10Z Development of an indoor tracking system Wong, Daniel Yongjie Lee Peng Hin School of Electrical and Electronic Engineering DRNTU::Engineering In the recent years, there has been an influx in the needs for indoor positioning and navigation across various industries. In this project, the aim is to implement a low cost and efficient solution based on current positioning technology namely using ZigBee along with the Arduino microcontroller. In order to estimate the tags within an acceptable range of error, various means such as statistical filters as well as trilateration is explored. In the report, factors such as path loss exponent that will affect this estimation are also discussed. A graphical user interface has been developed to show that that the location of the tags can be estimated and monitored with ease . Functionality tests have also been conducted to prove the results of these concepts. Bachelor of Engineering 2014-05-23T07:46:42Z 2014-05-23T07:46:42Z 2014 2014 Final Year Project (FYP) http://hdl.handle.net/10356/60210 en Nanyang Technological University 48 p. application/pdf |
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DRNTU::Engineering Wong, Daniel Yongjie Development of an indoor tracking system |
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In the recent years, there has been an influx in the needs for indoor positioning and navigation across various industries. In this project, the aim is to implement a low cost and efficient solution based on current positioning technology namely using ZigBee along with the Arduino microcontroller. In order to estimate the tags within an acceptable range of error, various means such as statistical filters as well as trilateration is explored. In the report, factors such as path loss exponent that will affect this estimation are also discussed. A graphical user interface has been developed to show that that the location of the tags can be estimated and monitored with ease . Functionality tests have also been conducted to prove the results of these concepts. |
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Lee Peng Hin |
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Lee Peng Hin Wong, Daniel Yongjie |
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Final Year Project |
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Wong, Daniel Yongjie |
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Wong, Daniel Yongjie |
title |
Development of an indoor tracking system |
title_short |
Development of an indoor tracking system |
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Development of an indoor tracking system |
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Development of an indoor tracking system |
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Development of an indoor tracking system |
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development of an indoor tracking system |
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2014 |
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http://hdl.handle.net/10356/60210 |
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