SIMULASI TRANSISI METAMORFOSIS BENTUK CITRA MODEL FRAKTAL DENGAN LIMA KOMPONEN KOLASE ARAH RADIAL DAN VERTIKAL
Abstract
Metamorphic as a keyword has several implementations in digital era. The basic implementation is in image processing that can be extended to other fields. The metamorphic process in image processing as a series transition visualization of two source images can be simulated in fractal model. As long as a pair of fractal objects of the iterated function system model uses the affine coefficients as a result of transformations in initial state, so it can be transformed to other states easily just applying gradually manipulation on each set of coefficients based on the interpolation values between the source and destination objects. In this paper there are two kinds of metamorphic transition effects on two pairs of fractal objects with five collage components discussed. The first model exhibits the metamorphic transition effect in radial direction and the second one exhibits the metamorphic transition effect in vertical direction between the pair of similar objects.
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References
Chen, C., Zheng, Y. & Sarem, M. (2006). A Fractal-based Algorithm for the Metamorphic Animation. 2nd International Conference on Information & Communication Technologies. 0-7803-9521-2/06 ©2006 IEEE, pp.2957-2963. Doi: 10.1109/ICTTA. 206.1684885
Deng, Y., Lou, G., Zheng, X., Zhang, T., Kim, M., Liu, H., Wang, C. & Chen, T.Y. (2021). BMT: Behavior Driven Development-based Metamorphic Testing for Autonomous Driving Models. IEEE/ACM 6th International Workshop on Metamorphic Testing. Doi: 10.1109/MET52542.2021.00012
Darmanto, T., Suwardi, I.S., & Munir, R. (2012). Cyclical Metamorphic Animation of Fractal Images Based on a Family of Multi-transitional IFS Code Approach. IEEE Conference on Control, Systems & Industrial Informatics. 878-1-4673-1023-9/12 ©2012 IEEE, pp.231-234. Doi: 10.1109/CCSII.2012.6470506
Darmanto,T., Suwardi, I.S. & Munir, R. (2013). Metamorphic Animation of 3D Fern-like Fractal Images based on a family of Transitional 3D IFS Code. International Conference on Information and Communication Technology. Telkom University. 978-1-4673-4994-5/13 @2013 IEEE, pp.273-276. Doi: 10.1109/ICoICT.2013.6574586
Darmanto,T., Suwardi, I.S. & Munir, R. (2014). Animation Simulation of Shooting Aircraft Events by Combination of Metamorphic Animation on Multi-object and on Object of IFS Fractal Model: Based on Cloning and Collision Detection Techniques. International Conference on Computer, Control, Informatics and Its Application. Doi: 10.1109/IC3INA.2014.7042619
Darmanto T. (2016). Animating Fractal of Things based on IFS Fractal Model. Lambert Academic Publishing, copyright © 2016, OmniScriptum GmbH & Co. KG, ISBN 978-3-659-86851-1
Ding, J., Wu, T., Lu, J.Q. & Hu, X.H. (2010). Self-Checked Metamorphic Testing of Image Processing Program. 4th International Conference on Secure Software Integration and Reliability Improvement. Doi: 10.1109/SSIRI.2010.25
Fu, S., Yang, X., Li, M. & Wang, F. (2021). An Identification Method of Image-based for Output Pattern of Metamorphic Relation in Burnup Calculation Program. 3rd International Academic Exchange Conference on Science and Technology Innovation. Doi: 10.1109/IAECST54258.2021.9695750
Gupta, A., Ali, A., Pandey, A.K., Gupta, A.K. & Tripathi, A. (2022). Metamorphic Cryptography using AES and LSB Method. International Conference on Advances in Computing, Communication and Materials. Doi: 10.1109/ICACCM56405.2022. 10009381
Jameel, T., Lin, M. & Chao, L. (2015). Test Oracle based on Metamorphic Relations for Image Processing Applications. IEEE/ACIS 16th International Conference on Software Engineering, Artificial Intelligence, Networking and Parallel/ Distributed Computing. Doi: 10.1109/SNPD.2015.7176238
Liu, H. & Chen. T.Y. (2012). A New Method for Constructing Metamorphic Relations. 12th International Conference on Quality Software. Doi: 10.1109/QSIC.2012.10
Mekala, R.R., Magnusson, G.E., Porter, A., Lindvall, M. & Diep, M. (2019). Metamorphic Detection of Adversarial Examples in Deep Learning Models with Affine Transformations. 4th International Workshop on Metamorphic Testing. Doi: 10.1109/MET.2019.00016
Morey, J., Sedig, K. & Mercer, R.E. (2001). Interactive Metamorphic Visuals: Exploring Polyhedral Relationships. The 5th International Conference on Information Visualization. 0-7695-1195-3/01 @2001 IEEE, pp.483-488. Doi: 10.1109/IV.2001.942100
Philjon, T.L. & Rao, N.V. (2011). Metamorphic Cryptography – A Paradox between Cryptography and Steganography using Dynamic Encryption. International Conference on Rencent Trends in Information Technology. Doi: 10.1109/ICRTIT.2011.5972272
Rahman, M.T., Al-Amin, M.A., Jobayer, B.B., Chowdhury, A.R. & Bhuiyan, M.A. (2007). A Novel Approach of Image Morphing Based on Pixel Transformation. 10th International Conference on Computer and Information Technology. 1-4244-1551-9/07 ©2007 IEEE. Doi: 10.1109/ICCITECHN.2007.4579398
ROIFAH, M. (2016). DESAIN MOZAIK PADA BINGKAI LINGKARAN DAN BELAH KETUPAT POLA SEGIENAM DAN UBIN PINWHEEL DENGAN MOTIF FRAKTAL. SKRIPSI .
Wardani, V. A. K. (2022). Perancangan Resort Dengan Pendekatan Arsitektur Biofi Lik Di Kulon Progo Yogyakarta.
Wibowo, T. A., Isnanto, R. R., & Hidayatno, A. (2012). TEKNIK MORPHING UNTUK OBJEK CITRA TIGA DIMENSI MENGGUNAKAN METODE INTERPOLASI LINEAR. Transient: Jurnal Ilmiah Teknik Elektro, 1(3), 68–71.
Wittenbrink, C.M. (1995). IFS Fractal Interpolation for 2D and 3D Visualization. Proceeding Visualization. Computer Engineering & Information Sciences. University of California. Doi: 10.1109/VISUAL. 1995.480798
Xu, L., Towey, D., French, A.P., Benford S., Zhou, Z.Q., Chen, T.Y. (2018). Enhancing Supervised Classifications with Metamorphic Relations. IEEE/ACM 3rd International Workshop Testing, Gothenberg, Swedia. e-ISBN: 978-1-4503-5729-6
Zhou, Z., Zheng, Z., Chen, T.Y., Zhou, J. & Qiu, K. (2021). Follow-up Test Cases are Better than Source Test Cases in Metamorphic Testing: A Preliminary Study. IEEE/ACM 6th International Workshop on Metamorphic Testing. Doi: 10.1109/MET52542.2021.00018
Zhuang, Y.X., Xiong, Y.S., Liu, F.Y. (2011). IFS Fractal Morphing based on Coarse Convex-Hull. 6th IEEE Joint International Information Technology and Artificial Intelligence Conference. Doi: 10.1109/ITAIC.2011.6030316
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