Nowadays video coding approach is a major key in many applications for easy transmission and storage consumption. The process of transformation is based on the empirical wavelet transform (EWT). The encoding process of video data provides secure and less consumption of storage and the reconstruction process consists of the reverse process with the extraction. In this paper, the coding of video is carried out at a very low bit rate with the enhancement of performance by proposing an approach of modified Set Partitioning in Hierarchical Tree (MSPIHT). This method encodes the high frequency frames with the scheduling of wavelet transform for efficient performances of encoding and improves the ability of both the frequency and time. By applying empirical wavelet transform on each video frame, the component of video frequency is extracted and the low frequency frame is encoded by the H.264/AVC standard. The low coefficient values are ignored in applying the threshold and in the reconstruction process, HBLPCE method is used for imaging enhancement. The simulation of the proposed approach analysis shows better performance in reliable process and efficiency when compared to existing.
Ohm, J. and Sullivan, G.J. (2013) High Efficiency Video Coding: The Next Frontier in Video Compression [Standards in a Nutshell]. IEEE Signal Processing Magazine, 30, 152-158. http://dx.doi.org/10.1109/MSP.2012.2219672
Amritha, K.M. and Nithin, S.S. (2015) Adaptive Encoding & Decoding of Compressed Video Using SPIHT Algorithm. International Journal of Advanced Research in Computer Engineering & Technology (IJARCET), 4, No. 5.
Kamisli, F. (2015) Block-Based Spatial Prediction and Transforms Based on 2D Markov Processes for Image and Video Compression. IEEE Transactions on Image Processing, 24, 1247-1260.
Thirumala, K., Umarikar, A.C. and Jain, T. (2015) Estimation of Single-Phase and Three-Phase Power-Quality Indices Using Empirical Wavelet Transform. IEEE Transactions on Power Delivery, 30, 445-454.
Choi, Y. and Joo, J. (2015) Exploration of Practical HEVC/H.265 Sample Adaptive Offset Encoding Policies. IEEE Signal Processing Letters, 22, 465-468.
Nguyen, T., Helle, P., Winken, M., Bross, B., Marpe, D., Schwarz, H. and Wiegand, T. (2013) Transform Coding Techniques in HEVC. IEEE Journal of Selected Topics in Signal Processing, 7, 978-989.
Hwang, Y.-T., Lyu, M.-W. and Lin, C.-C. (2015) A Low-Complexity Embedded Compression Codec Design with Rate Control for High-Definition Video. IEEE Transactions on Circuits and Systems for Video Technology, 25, 674- 687.
Daribo, I., Florencio, D. and Cheung, G. (2014) Arbitrarily Shaped Motion Prediction for Depth Video Compression Using Arithmetic Edge Coding. IEEE Transactions on Image Processing, 23, 4696-4708.
Hadizadeh, H. and Bajic, I.V. (2014) Saliency-Aware Video Compression. IEEE Transactions on Image Processing, 23, 19-33.
Neelima, M. and Mahaboob Pasha, Md. (2014) Wavelet Transform Based on Image Denoising Using Thresholding Techniques. International Journal of Advanced Research in Computer and Communication Engineering, 3, No. 9.
Razaak, M., Martini, M.G. and Savino, K. (2014) A Study on Quality Assessment for Medical Ultrasound Video Compressed via HEVC. IEEE Journal of Biomedical and Health Informatics, 18, 1552-1559.
Zaghetto, A. and de Queiroz, R.L. (2013) Scanned Document Compression Using Block-Based Hybrid Video Codec. IEEE Transactions on Image Processing, 22, 2420-2428.
Gilles, J. (2013) Empirical Wavelet Transform. IEEE Transactions on Signal Processing, 61, 3999-4010. http://dx.doi.org/10.1109/TSP.2013.2265222
Hou, J.H., Chau, L.-P., He, Y., Zhang, M.Q. and Magnenat-Thalmann, N. (2013) Rate-Distortion Model Based Bit Allocation for 3-D Facial Compression Using Geometry Video. IEEE Transactions on Circuits and Systems for Video Technology, 23, 1537-1541.
Nguyen, V.-A., Min, D.B. and Do, M.N. (2013) Efficient Techniques for Depth Video Compression Using Weighted Mode Filtering. IEEE Transactions on Circuits and Systems for Video Technology, 23, 189-202.
Jiang, X.H., Wang, W., Sun, T.F., Shi, Y.Q. and Wang, S.L. (2013) Detection of Double Compression in MPEG-4 Videos Based on Markov Statistics. IEEE Signal Processing Letters, 20, 447-450.
Mai, Z.C., Mansour, H., Nasiopoulos, P. and Ward, R.K. (2013) Visually Favorable Tone-Mapping with High Compression Performance in Bit-Depth Scalable Video Coding. IEEE Transactions on Multimedia, 15, 1503-1518.
Chen, Z.F., Tsaftaris, S.A., Soyak, E. and Katsaggelos, A.K. (2013) Application-Aware Approach to Compression and Transmission of H.264 Encoded Video for Automated and Centralized Transportation Surveillance. IEEE Transactions on Intelligent Transportation Systems, 14, 2002-2007.
Cai, X. and Lim, J.S. (2012) Algorithms for Transform Selection in Multiple-Transform Video Compression. 2012 19th IEEE International Conference on Image Processing (ICIP), 30 September-3 October 2012, 2481-2484,
Sao, C. (2011) Spiht Based Video Compression. International Journal of Image Processing and Applications, 2, 111- 117.
Starck, J.-L., Candes, E.J. and Donoho, D.L. (2002) The Curvelet Transform for Image Denoising. IEEE Transactions on Image Processing, 11, 670-684.
Ohm, J. and Sullivan, G.J. (2013) High Efficiency Video Coding: The Next Frontier in Video Compression [Standards in a Nutshell]. IEEE Signal Processing Magazine, 30, 152-158. http://dx.doi.org/10.1109/MSP.2012.2219672
Amritha, K.M. and Nithin, S.S. (2015) Adaptive Encoding & Decoding of Compressed Video Using SPIHT Algorithm. International Journal of Advanced Research in Computer Engineering & Technology (IJARCET), 4, No. 5.
Kamisli, F. (2015) Block-Based Spatial Prediction and Transforms Based on 2D Markov Processes for Image and Video Compression. IEEE Transactions on Image Processing, 24, 1247-1260.
Thirumala, K., Umarikar, A.C. and Jain, T. (2015) Estimation of Single-Phase and Three-Phase Power-Quality Indices Using Empirical Wavelet Transform. IEEE Transactions on Power Delivery, 30, 445-454.
Choi, Y. and Joo, J. (2015) Exploration of Practical HEVC/H.265 Sample Adaptive Offset Encoding Policies. IEEE Signal Processing Letters, 22, 465-468.
Nguyen, T., Helle, P., Winken, M., Bross, B., Marpe, D., Schwarz, H. and Wiegand, T. (2013) Transform Coding Techniques in HEVC. IEEE Journal of Selected Topics in Signal Processing, 7, 978-989.
Hwang, Y.-T., Lyu, M.-W. and Lin, C.-C. (2015) A Low-Complexity Embedded Compression Codec Design with Rate Control for High-Definition Video. IEEE Transactions on Circuits and Systems for Video Technology, 25, 674- 687.
Daribo, I., Florencio, D. and Cheung, G. (2014) Arbitrarily Shaped Motion Prediction for Depth Video Compression Using Arithmetic Edge Coding. IEEE Transactions on Image Processing, 23, 4696-4708.
Hadizadeh, H. and Bajic, I.V. (2014) Saliency-Aware Video Compression. IEEE Transactions on Image Processing, 23, 19-33.
Neelima, M. and Mahaboob Pasha, Md. (2014) Wavelet Transform Based on Image Denoising Using Thresholding Techniques. International Journal of Advanced Research in Computer and Communication Engineering, 3, No. 9.
Razaak, M., Martini, M.G. and Savino, K. (2014) A Study on Quality Assessment for Medical Ultrasound Video Compressed via HEVC. IEEE Journal of Biomedical and Health Informatics, 18, 1552-1559.
Zaghetto, A. and de Queiroz, R.L. (2013) Scanned Document Compression Using Block-Based Hybrid Video Codec. IEEE Transactions on Image Processing, 22, 2420-2428.
Gilles, J. (2013) Empirical Wavelet Transform. IEEE Transactions on Signal Processing, 61, 3999-4010. http://dx.doi.org/10.1109/TSP.2013.2265222
Hou, J.H., Chau, L.-P., He, Y., Zhang, M.Q. and Magnenat-Thalmann, N. (2013) Rate-Distortion Model Based Bit Allocation for 3-D Facial Compression Using Geometry Video. IEEE Transactions on Circuits and Systems for Video Technology, 23, 1537-1541.
Nguyen, V.-A., Min, D.B. and Do, M.N. (2013) Efficient Techniques for Depth Video Compression Using Weighted Mode Filtering. IEEE Transactions on Circuits and Systems for Video Technology, 23, 189-202.
Jiang, X.H., Wang, W., Sun, T.F., Shi, Y.Q. and Wang, S.L. (2013) Detection of Double Compression in MPEG-4 Videos Based on Markov Statistics. IEEE Signal Processing Letters, 20, 447-450.
Mai, Z.C., Mansour, H., Nasiopoulos, P. and Ward, R.K. (2013) Visually Favorable Tone-Mapping with High Compression Performance in Bit-Depth Scalable Video Coding. IEEE Transactions on Multimedia, 15, 1503-1518.
Chen, Z.F., Tsaftaris, S.A., Soyak, E. and Katsaggelos, A.K. (2013) Application-Aware Approach to Compression and Transmission of H.264 Encoded Video for Automated and Centralized Transportation Surveillance. IEEE Transactions on Intelligent Transportation Systems, 14, 2002-2007.
Cai, X. and Lim, J.S. (2012) Algorithms for Transform Selection in Multiple-Transform Video Compression. 2012 19th IEEE International Conference on Image Processing (ICIP), 30 September-3 October 2012, 2481-2484,
Sao, C. (2011) Spiht Based Video Compression. International Journal of Image Processing and Applications, 2, 111- 117.
Starck, J.-L., Candes, E.J. and Donoho, D.L. (2002) The Curvelet Transform for Image Denoising. IEEE Transactions on Image Processing, 11, 670-684.