RFID smart shelf system design

The first part of this project was an introduction to the concept of the Real Time Locating System (RTLS) which was developed by SIMTech. The present RTLS active tags are operating on Texas Instruments (TI) CC2530 ZigBee chipset with in-built 8051 core firmware. The initial focus of this project...

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Main Author: Su, Minhan.
Other Authors: Sheel Aditya
Format: Final Year Project
Language:English
Published: 2013
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Online Access:http://hdl.handle.net/10356/55123
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-551232023-07-07T17:19:55Z RFID smart shelf system design Su, Minhan. Sheel Aditya School of Electrical and Electronic Engineering A*STAR SIMTech DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems The first part of this project was an introduction to the concept of the Real Time Locating System (RTLS) which was developed by SIMTech. The present RTLS active tags are operating on Texas Instruments (TI) CC2530 ZigBee chipset with in-built 8051 core firmware. The initial focus of this project is to improve on the impedance matching between the chipset and the antenna. A new concept of replacing the current 7 discrete components matching circuit with a single ceramic Balun circuit chip was introduced to reduce the size of the Printed Circuit Board (PCB) footprint and improving the spurious emission transmitted by the tags. The project progressed with the study of the feasibility of implementing and replacing the current chipset on the tag with Bluetooth technology protocol. The attention was drawn to the research and replacement of the current chipset with CC2540 Bluetooth Low Energy (BLE) chipset. This new concept was actualized by student at a minimal cost by replacing the CC2530 to a CC2540 chipset on the current RTLS tags. With additional effort, the size of the Bluetooth tag was significantly reduced and improved which promotes user friendliness and increase compatibility for personnel and assets tagging. This project was concluded with the implementation of a personnel tracking concept onboard a naval ship via a student designed Graphical User’s Interface (GUI) which worked in combination with TI’s Bluetooth Device Monitor GUI. Bachelor of Engineering 2013-12-19T01:27:53Z 2013-12-19T01:27:53Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/55123 en Nanyang Technological University 89 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Wireless communication systems
Su, Minhan.
RFID smart shelf system design
description The first part of this project was an introduction to the concept of the Real Time Locating System (RTLS) which was developed by SIMTech. The present RTLS active tags are operating on Texas Instruments (TI) CC2530 ZigBee chipset with in-built 8051 core firmware. The initial focus of this project is to improve on the impedance matching between the chipset and the antenna. A new concept of replacing the current 7 discrete components matching circuit with a single ceramic Balun circuit chip was introduced to reduce the size of the Printed Circuit Board (PCB) footprint and improving the spurious emission transmitted by the tags. The project progressed with the study of the feasibility of implementing and replacing the current chipset on the tag with Bluetooth technology protocol. The attention was drawn to the research and replacement of the current chipset with CC2540 Bluetooth Low Energy (BLE) chipset. This new concept was actualized by student at a minimal cost by replacing the CC2530 to a CC2540 chipset on the current RTLS tags. With additional effort, the size of the Bluetooth tag was significantly reduced and improved which promotes user friendliness and increase compatibility for personnel and assets tagging. This project was concluded with the implementation of a personnel tracking concept onboard a naval ship via a student designed Graphical User’s Interface (GUI) which worked in combination with TI’s Bluetooth Device Monitor GUI.
author2 Sheel Aditya
author_facet Sheel Aditya
Su, Minhan.
format Final Year Project
author Su, Minhan.
author_sort Su, Minhan.
title RFID smart shelf system design
title_short RFID smart shelf system design
title_full RFID smart shelf system design
title_fullStr RFID smart shelf system design
title_full_unstemmed RFID smart shelf system design
title_sort rfid smart shelf system design
publishDate 2013
url http://hdl.handle.net/10356/55123
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