[1]
Moeed Haghnevis , Ronald G. Askin, A Modeling Framework for Engineered Complex Adaptive Systems, J. IEEE Systems Journal, 6(3)(2012)520-530.
DOI: 10.1109/jsyst.2012.2190696
Google Scholar
[2]
M. Couture and R. Charpentier, Elements of a framework for studying complex systems, in Proc. 12th Int. Command Control Res. Technol. Symp., 2007, pp.1-17.
Google Scholar
[3]
Bo Yang, Jiming Liu, Dayou Liu, Characterizing and Extracting Multiplex Patterns in Complex Networks, J. IEEE Transl. J. Systems, Man, and Cybernetics-Part B: Cybernetics, 42(2)(2012)469-481.
DOI: 10.1109/tsmcb.2011.2167751
Google Scholar
[4]
Munesh Chandra, Tarun Shrimali, Anish Gupta, A Survey: Recent Development in Fractals, Proc. IEEE Symp. International Conference on Computational Intelligence and Communication Networks(CICN 4th), IEEE Press, (2012), pp.251-256.
DOI: 10.1109/cicn.2012.36
Google Scholar
[5]
ZHENG Ji-bing, Cosmic Energy Aggregator, China Patent, 94117538. 3, (1996).
Google Scholar
[6]
Jibing Zheng. Spatial field effect physical therapy device: United States Patent 7, 445, 009, (2008).
Google Scholar
[7]
Andreas Geiger, Andreas Kroll, Modeling and Analyzing Technical Systems as Complex Networks Detecting Inverse Response, Proc. IEEE Symp. Computational Intelligence in Control and Automation (CICA), IEEE Press. (2013), pp.89-96.
DOI: 10.1109/cica.2013.6611668
Google Scholar
[8]
Gan M, Peng H, Peng X, et al. A local linear RBF nets-based state-dependent AR model for nonlinear time series modeling and predicting, J. Information Sciences, 180(22)(2010) 4370-4383.
DOI: 10.1016/j.ins.2010.07.012
Google Scholar
[9]
Sridharan Bhavani, Kepanna Gowder Thanushkodi, Comparison of fractal coding methods for medical image Compression, J. IET Image Process, 7(7)(2013)686-693.
DOI: 10.1049/iet-ipr.2012.0041
Google Scholar
[10]
HE Da ren, LIU Zong-hua, WANG Bin-hong, Complex System and Complex Networks, Higher Education Press., Beijing, (2009), pp.1-40.
Google Scholar
[11]
Shiping Zhu, Ling Zhang, A Review of Fractal Video Coding, Proc. IEEE Symp. International Conference on Industrial Control and Electronics Engineering(ICICEE 2012), IEEE Press., (2012), pp.951-953.
Google Scholar
[12]
TURN D . PHAM, Fuzzy Fractal Analysis of Molecular Imaging Data, J. Proceedings of The IEEE, 96(8)(2008)1332-1347.
Google Scholar
[13]
ZHU Hua, JI Cui-cui, Fractal Theory and Its Applications, Science Press, Beijing: (2011), pp.262-316.
Google Scholar
[14]
Yongzhi Zhou, Haoran Geng, Mei LiZhongxi Yang, Multirange Fractal Approach to Analyze the Microstructure of Sn Melt, Proc. IEEE Symp. 3rd International Congress on Image and Signal Processing (CISP2010), IEEE Press., (2010), pp.3147-3151.
DOI: 10.1109/cisp.2010.5647793
Google Scholar
[15]
Sayantan Dhar, Rowdra Ghatak, Bhaskar Gupta, A Wideband Minkowski Fractal Dielectric Resonator Antenna, J. IEEE Trans. Aatenas And Propagation, 61(6)(2013)2895-2903.
DOI: 10.1109/tap.2013.2251596
Google Scholar
[16]
Douglas H. Werner, Suman Ganguly, An Overview of Fractal Antenna Engineering Research, J. IEEE Antennas and Propagation Magazine, 45(1)(2013)38-57.
DOI: 10.1109/map.2003.1189650
Google Scholar
[17]
Vladimir S . Lerner, Information Systems Theory and Informational Macrodynamics: Review of the Main Results, J. IEEE Ttans. Systems, Man, And Cybernetics Society, 37(6)(2007)1050-1066.
DOI: 10.1109/tsmcc.2007.905749
Google Scholar
[18]
HE Jian-yong, Optimization Method, TsingHua University Press, Beijing, 2007, pp.147-242.
Google Scholar