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A. E. Abou-El-azm

Researcher at Menoufia University

Publications -  8
Citations -  97

A. E. Abou-El-azm is an academic researcher from Menoufia University. The author has contributed to research in topics: Fading & Interleaving. The author has an hindex of 4, co-authored 8 publications receiving 82 citations.

Papers
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An SVD audio watermarking approach using chaotic encrypted images

TL;DR: Experimental results show that the proposed audio watermarking approach maintains the high quality of the audio signal and that the watermark extraction and decryption are possible even in the presence of attacks.
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Performance of the audio signals transmission over wireless networks with the channel interleaving considerations

TL;DR: A novel interleaver scheme based on chaotic Baker map is presented for protection against error bursts and reduction the packet loss of the audio signals over wireless networks and it improves the quality of the received audio signal.
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Performance enhancement of power line communication systems with efficient low density parity-check codes, noise removal, equalization, and chaotic interleaving

TL;DR: A method for constructing Low Density Parity-Check (LDPC) codes for Forward Error-Correction (FEC) on PL channel combined with Chaotic Interleaving (CI) and linear equalization to compensate for burst errors and multipath effects is presented.
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Image transmission over mobile Bluetooth networks with enhanced data rate packets and chaotic interleaving

TL;DR: A novel chaotic interleaving scheme for image transmission over correlated and uncorrelated fading channels over mobile Bluetooth networks is presented and the simulation results show the superiority of the proposed scheme over the traditional schemes.
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Efficient Approach for Monitoring and Controlling Water Parameters Utilizing Integrated Treatment Based on WSNs

TL;DR: The presented approach for monitoring and controlling water parameters in real-time is implemented utilizing merging between WSN and designed simple workstation and reveals that the presented approach is effective for water treatment and efficient more than the past proposed water monitoring scenarios.