Fuzzy Logic design using VHDL on FPGA

This fuzzy logic design is to produce 3 outputs from a 7 input. The 7 digital input (3-bits each) is produced from the analogue output of the 7-input honeycomb sensor. The honeycomb sensor receives input from seven sensors which sense light ambient and produces analogue signal to acknowledge the loc...

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Main Author: Sham Sagaria a/l Marisinapen
Other Authors: Najmuddin Mohd Hassan (Advisor)
Format: Learning Object
Language:English
Published: Universiti Malaysia Perlis 2008
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Online Access:http://dspace.unimap.edu.my/xmlui/handle/123456789/3120
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spelling my.unimap-31202008-11-12T07:32:53Z Fuzzy Logic design using VHDL on FPGA Sham Sagaria a/l Marisinapen Najmuddin Mohd Hassan (Advisor) Fuzzy systems Expert systems (Computer science) Field programmable gate arrays VHDL (Computer hardware description language) Honeycomb This fuzzy logic design is to produce 3 outputs from a 7 input. The 7 digital input (3-bits each) is produced from the analogue output of the 7-input honeycomb sensor. The honeycomb sensor receives input from seven sensors which sense light ambient and produces analogue signal to acknowledge the location which receives the highest light ambient. This analogue signal is converted to digital signal and this where the fuzzy logic designs comes. The fuzzy logic receive 7 digital input which provide information on which location the light ambient is high. From this digital input, the fuzzy logic will choose the best behaviour to produce 3 outputs to control the movement of three motors (horizontal, vertical and tilt) which rotates a plate facing the location with the highest light ambient. The fuzzy logic design will produce a 2 output of 3-bits each and 1 output of 4-bits, for each type of movements which it’s MSB represent the direction of the plate rotation and the remaining bits is to indicate the plate rotation degree. The design also should be able to store the current position of the plate to prevent system error on the downstream when it uses the output of this design to rotate the motors. The overall function of this project is to enable reception of maximum sunlight to generate electrical power using solar system. 2008-11-12T07:32:53Z 2008-11-12T07:32:53Z 2008-04 Learning Object http://hdl.handle.net/123456789/3120 en Universiti Malaysia Perlis School of Computer and Communication Engineering
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Fuzzy systems
Expert systems (Computer science)
Field programmable gate arrays
VHDL (Computer hardware description language)
Honeycomb
spellingShingle Fuzzy systems
Expert systems (Computer science)
Field programmable gate arrays
VHDL (Computer hardware description language)
Honeycomb
Sham Sagaria a/l Marisinapen
Fuzzy Logic design using VHDL on FPGA
description This fuzzy logic design is to produce 3 outputs from a 7 input. The 7 digital input (3-bits each) is produced from the analogue output of the 7-input honeycomb sensor. The honeycomb sensor receives input from seven sensors which sense light ambient and produces analogue signal to acknowledge the location which receives the highest light ambient. This analogue signal is converted to digital signal and this where the fuzzy logic designs comes. The fuzzy logic receive 7 digital input which provide information on which location the light ambient is high. From this digital input, the fuzzy logic will choose the best behaviour to produce 3 outputs to control the movement of three motors (horizontal, vertical and tilt) which rotates a plate facing the location with the highest light ambient. The fuzzy logic design will produce a 2 output of 3-bits each and 1 output of 4-bits, for each type of movements which it’s MSB represent the direction of the plate rotation and the remaining bits is to indicate the plate rotation degree. The design also should be able to store the current position of the plate to prevent system error on the downstream when it uses the output of this design to rotate the motors. The overall function of this project is to enable reception of maximum sunlight to generate electrical power using solar system.
author2 Najmuddin Mohd Hassan (Advisor)
author_facet Najmuddin Mohd Hassan (Advisor)
Sham Sagaria a/l Marisinapen
format Learning Object
author Sham Sagaria a/l Marisinapen
author_sort Sham Sagaria a/l Marisinapen
title Fuzzy Logic design using VHDL on FPGA
title_short Fuzzy Logic design using VHDL on FPGA
title_full Fuzzy Logic design using VHDL on FPGA
title_fullStr Fuzzy Logic design using VHDL on FPGA
title_full_unstemmed Fuzzy Logic design using VHDL on FPGA
title_sort fuzzy logic design using vhdl on fpga
publisher Universiti Malaysia Perlis
publishDate 2008
url http://dspace.unimap.edu.my/xmlui/handle/123456789/3120
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score 13.214268