2012•International Journal of Computer ApplicationsOpen access

Steganography in Audio Files by Entropy using FEC as ReedSolomon of VOIP Streams

Santhana MangaiP.S, G. Selva Vinayagam

Open full text 0 citations

Abstract

In this paper introduce a novel technique to identify the voice (active frames) and silent regions (inactive frames) of a speech stream very much suitable for VoIP calls.Thus here the proposed a better voice activity detection based on the entropy algorithm.High-capacity steganography algorithm for embedding data in the inactive frames .Then inactive frames are encoded by G.723.1 source codec, which is used extensively in Voice over Internet Protocol (VoIP).As the data embedding capacity is very high on inactive frames of the audio signals than in the active frames.Entropy based Voice Activity Detection algorithms for VoIP applications can save bandwidth by filtering the frames that do not contain speech .On evaluating the proposed approach with the existing methods, our approach yield a better saving in bandwidth, yet maintaining high capacity of data embedding.yet maintaining good quality of the speech streams and then finally using forward error correcting code as Reed-Solomon codes.It can be used as encoder and decoder.By using Reed-Solomon code, data losses occur in the transmission can be detected and recovered by adding extra information (redundancy) to the original data.

Open-access reader

About this research paper

What this paper is about

In this paper introduce a novel technique to identify the voice (active frames) and silent regions (inactive frames) of a speech stream very much suitable for VoIP calls.Thus here the proposed a better voice activity detection based on the entropy algorithm.High-capacity steganography algorithm for embedding data in the inactive frames .Then inactive frames are encoded by G.723.1 source codec, which is used extensively in Voice over Internet Protocol (VoIP).As the data embedding capacity is very high on inactive frames of the audio signals than in the active frames.Entropy based Voice Activity Detection algorithms for VoIP applications can save bandwidth by filtering the frames that do not contain speech .On evaluating the proposed approach with the existing methods, our approach yield a better saving in bandwidth, yet maintaining high capacity of data embedding.yet maintaining good quality of the speech streams and then finally using forward error correcting code as Reed-Solomon codes.It can be used as encoder and decoder.By using Reed-Solomon code, data losses occur in the transmission can be detected and recovered by adding extra information (redundancy) to the original data.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this paper introduce a novel technique to identify the voice (active frames) and silent regions (inactive frames) of a speech stream very much suitable for VoIP calls.Thus here the proposed a better voice activity detection based on the entropy algorithm.High-capacity steganography algorithm for embedding data in the inactive frames .Then inactive frames are encoded by G.723.1 source codec, which is used extensively in Voice over Internet Protocol (VoIP).As the data embedding capacity is very high on inactive frames of the audio signals than in the active frames.Entropy based Voice Activity Detection algorithms for VoIP applications can save bandwidth by filtering the frames that do not contain speech .On evaluating the proposed approach with the existing methods, our approach yield a better saving in bandwidth, yet maintaining high capacity of data embedding.yet maintaining good quality of the speech streams and then finally using forward error correcting code as Reed-Solomon codes.It can be used as encoder and decoder.By using Reed-Solomon code, data losses occur in the transmission can be detected and recovered by adding extra information (redundancy) to the original data.

Key concepts: Computer science, Voice over IP, Steganography, STREAMS, Speech recognition, Multimedia, Computer network, World Wide Web

Related papers

Back to paper searchBrowse research topicsOriginal source
Steganography in Audio Files by Entropy using FEC as ReedSolomon of VOIP Streams — Research Paper | ScholarLens