Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm

This research is in the early phase to solve the problem of how to remove a signal noise using concurrent algorithm. The solution of this problem is shown by producing a high level conceptual model to visualize the architecture of this research. The human ear by means of the cochlea is modeled...

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Main Authors: Hammuzamer Irwan, Hamzah, Azween, Abdullah
Format: Conference or Workshop Item
Language:English
Published: 2008
Subjects:
Online Access:http://scholars.utp.edu.my/id/eprint/866/
http://scholars.utp.edu.my/id/eprint/866/1/1._silicon08_-_paper_-_hammuzamer.pdf
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author Hammuzamer Irwan, Hamzah
Azween, Abdullah
author_facet Hammuzamer Irwan, Hamzah
Azween, Abdullah
author_sort Hammuzamer Irwan, Hamzah
building UTP Institutional Repository
collection Online Access
description This research is in the early phase to solve the problem of how to remove a signal noise using concurrent algorithm. The solution of this problem is shown by producing a high level conceptual model to visualize the architecture of this research. The human ear by means of the cochlea is modeled and adapted for the noise filtering mechanism. Moreover, the brain is utilized as a medium to recognize the filtered signals, make decision, and focus on the desired signal frequency to produce the result. All these processes are concurrently executed to optimize the time and space factors in computing. Therefore, for the moment, a high level conceptual model is introduced to solve this research problem.
first_indexed 2025-11-13T07:24:15Z
format Conference or Workshop Item
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institution Universiti Teknologi Petronas
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language English
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spelling oai:scholars.utp.edu.my:8662017-03-20T01:57:02Z http://scholars.utp.edu.my/id/eprint/866/ Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm Hammuzamer Irwan, Hamzah Azween, Abdullah QA75 Electronic computers. Computer science This research is in the early phase to solve the problem of how to remove a signal noise using concurrent algorithm. The solution of this problem is shown by producing a high level conceptual model to visualize the architecture of this research. The human ear by means of the cochlea is modeled and adapted for the noise filtering mechanism. Moreover, the brain is utilized as a medium to recognize the filtered signals, make decision, and focus on the desired signal frequency to produce the result. All these processes are concurrently executed to optimize the time and space factors in computing. Therefore, for the moment, a high level conceptual model is introduced to solve this research problem. 2008 Conference or Workshop Item PeerReviewed application/pdf en http://scholars.utp.edu.my/id/eprint/866/1/1._silicon08_-_paper_-_hammuzamer.pdf Hammuzamer Irwan, Hamzah and Azween, Abdullah (2008) Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm. In: Seminar Ilmiah Ilmu Komputer Nasional (Silicon 2008), 13–14 November 2008, Universitas Pelita Harapan Tangerang, Indonesia .
spellingShingle QA75 Electronic computers. Computer science
Hammuzamer Irwan, Hamzah
Azween, Abdullah
Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm
title Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm
title_full Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm
title_fullStr Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm
title_full_unstemmed Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm
title_short Biologically Inspired Signal Noise Elimination Using Human Ear Model with Concurrent Algorithm
title_sort biologically inspired signal noise elimination using human ear model with concurrent algorithm
topic QA75 Electronic computers. Computer science
url http://scholars.utp.edu.my/id/eprint/866/
http://scholars.utp.edu.my/id/eprint/866/1/1._silicon08_-_paper_-_hammuzamer.pdf