Novel Approach for Image Restoration and TransmissionCSCJournals
This paper develops a new technique in image restoration and transmission process, where the image size is halved after transforming it to the frequency domain by applying discrete Fourier transform. The conjugate symmetry and mirror property of transformed image spectrums could be utilized by deleting the redundant spectrums from second half image after tracking and keeping the conjugated locations. Those redundant locations are kept using one- to- one relationship. Depending on the halving procedure, the new image size will be divided by two. A reconstructed procedure is created to redistribute the deleted spectrum with their associated locations. The reconstructed image is ready now for restoring again by applying the inverse discrete Fourier transform back to the spatial domain. The restored image is qualified using Peak Signal to Noise Ratio measurement and the result was very satisfied. The advantages of this technique appear in the storage cost, where the memory locations will be reduced to the half. Also, from communication side, this work approved that the image transmission time needs to transmit the halved image is half of the original one.
This presentation was made by the ICGLR during the session "Women as Economic Actors in Responsible Supply Chains of Minerals" of the 9th Multi-stakeholder Forum for Responsible Mineral Supply Chains, held in Paris on 4-6 May 2015.
Find out more at http://mneguidelines.oecd.org/icglr-oecd-un-forum-paris-2015.htm
Novel Approach for Image Restoration and TransmissionCSCJournals
This paper develops a new technique in image restoration and transmission process, where the image size is halved after transforming it to the frequency domain by applying discrete Fourier transform. The conjugate symmetry and mirror property of transformed image spectrums could be utilized by deleting the redundant spectrums from second half image after tracking and keeping the conjugated locations. Those redundant locations are kept using one- to- one relationship. Depending on the halving procedure, the new image size will be divided by two. A reconstructed procedure is created to redistribute the deleted spectrum with their associated locations. The reconstructed image is ready now for restoring again by applying the inverse discrete Fourier transform back to the spatial domain. The restored image is qualified using Peak Signal to Noise Ratio measurement and the result was very satisfied. The advantages of this technique appear in the storage cost, where the memory locations will be reduced to the half. Also, from communication side, this work approved that the image transmission time needs to transmit the halved image is half of the original one.
This presentation was made by the ICGLR during the session "Women as Economic Actors in Responsible Supply Chains of Minerals" of the 9th Multi-stakeholder Forum for Responsible Mineral Supply Chains, held in Paris on 4-6 May 2015.
Find out more at http://mneguidelines.oecd.org/icglr-oecd-un-forum-paris-2015.htm
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