[1] Lin J Y, Ban Y F. The evolving network structure of US airline system during 1990-2010[J]. Physica A, 2014, 410: 302-312.
[2] Li W, Cai X. Statistical analysis of airport network of China[J]. Physical Review E, 2003, 69(4): 046106.
[3] Liu H K, Zhou T. Empirical study of Chinese city airline network[J]. Acta Physica Sinica, 2007, 56(1): 106-112.
[4] 钱江海. 空间加权网络模型及权度相关性研究[D]. 上海:华东师范大学,2009.
Qian Jianghai. The study of spatial weighted network model and strength-degree correlation[D]. Shanghai: East China Normal University, 2009.
[5] Barthélemy M, Flammini A. Modeling urban street patterns[J]. Physical Review Letters, 2008, 100(13): 138702.
[6] Masucci A P, Smith D, Crooks A, et al. Random planar graphs and the London street network[J]. Eur Phys J B, 2009, 71(2): 259-271.
[7] Crucitti P, Latora V, Porta S. Centrality measures in spatial networks of urban streets[J]. Physical Review E, 2006, 73(3): 036125.
[8] Yook S H, Jeong H, Barabási A L. Modeling the Internet's large-scale topology[J]. Proc Natl Acad Sci USA, 2002, 99(21): 13382-13386.
[9] Ravasz E, Barabási A L. Hierarchical organization in complex networks[J]. Physical Review E, 2003, 67(2): 026112.
[10] Albert R, Albert I, Nakarado G L. Structural vulnerability of the North American power grid[J]. Physical Review E, 2004, 69(2): 025103.
[11] Solé R V, Rosas-Casals M, Corominas-Murtra B, et al. Robustness of the European power grids under intentional attack[J]. Physical Review E, 2008, 77(2): 026102.
[12] Kinney R, Crucitti P, Albert R, et al. Modeling cascading failures in the North American power grid[J]. Eur Phys J B, 2005, 46(1): 101-107.
[13] Lambiotte R, Blondel V D, Kerchove C, et al. Geographical dispersal of mobile communication networks[J]. Physica A, 2008, 387(21): 5317-5325.
[14] Liben-Nowell D, Nowak J, Kumar R, et al. Geographic routing in social networks[J]. Proc Natl Acad Sci USA, 2005, 102(33): 11623-11628.
[15] Okumura Y. Spatial competition and collaboration networks[J]. International Journal of Game Theory, 2012, 41(3): 455-472.
[16] Chandra A K, Hajra K B, Das P K, et al. Modeling temporal and spatial features of collaboration networks[J]. Int J of Mod Phys C, 2007, 18(7): 1157-1172.
[17] Onel S, Zeid A, Kamarthi S. The structure and analysis of nanotechnology co-author and citation networks[J]. Scientometrics, 2011, 89(1): 119-138.
[18] Adamic L A, Huberman B A, Barabási A L, et al. Power-Law distribution of the World Wide Web[J]. Science, 2000, 287(5461): 2115.
[19] Progulova T, Gadjiev B. Comparative analysis of collaboration networks[C] // Mohammad-Djafari A. AIP Conference Proceedings of the 30nd International Workshop on Bayesian Inference and Maximum Entropy Methods in Science and Engineering. New York: American Institute of Physics, 2011: 415-422.
[20] Montoya J M, Solé R V. Small world patterns in food webs[J]. Journal of Theoretical Biology, 2002, 214(3): 405-412.
[21] Motter A E, De Moura A P S, Lai Y C, et al. Topology of the conceptual network of language[J]. Physical Review E, 2002, 65(6): 065102.
[22] Scellato S, Cardillo A, Latora V, et al. The backbone of a city[J]. Eur Phys J B, 2006, 50(1/2): 221-225.
[23] Dall J, Christensen M. Random geometric graphs[J]. Physical Review E, 2002, 66(1): 016121.
[24] Liu F, Zhao Q. An efficient organization mechanism for spatial networks[J]. Physica A, 2006, 366: 608-618.
[25] Guan Z H, Ding L, Kong Z M. Multi-radius geographical spatial networks: Statistical characteristics and application to wireless sensor networks[J]. Physica A, 2010, 389(1): 198-204.
[26] Waxman B M. Routing of multipoint connections[J]. IEEE J Select Areas Commun, 1988, 1(3): 286-292.
[27] Sen P, Banerjee K, Biswas T. Phase transitions in a network with a range-dependent connection probability[J]. Physical Review E, 2002, 66(3): 037102.
[28] Kosmidis K, Havlin S, Bunde A. Structural properties of spatially embedded networks[J]. Europhysics Letters, 2008, 82(4): 48005.
[29] Barthélemy M. Crossover from scale-free to spatial networks[J]. Europhysics Letters, 2003, 63(6): 915-921.
[30] Manna S S, Sen P. Modulated scale-free network in Euclidean space[J]. Physical Review E, 2002, 66(6): 066114.
[31] Xie Y B, Zhou T, Bai W J, et al. Geographical networks evolving with optimal policy[J]. Physical Review E, 2007, 75(3): 036106.
[32] Bounova G A. Topological evolution of networks: case studies in the US airlines and language Wikipedias[D]. Cambridge: Massachusetts Institute Of Technology, 2009.
[33] Chi L P, Cai X. Structural changes caused by error and attack tolerance in US airport network[J]. Int J of Mod Phys B, 2008, 18(17-19): 2394-2400.
[34] Zhang J, Cao X B, Du W B, et al. Evolution of Chinese airport network[J]. Physica A, 2010, 389(18): 3922-3931.
[35] Dorogovtsev S N, Mendes J F F. Language as an evolving word web[J]. Proc R Soc London B, 2001, 268(1485): 2603-2606.
[36] Pinto C M A, Lopes A M, Machado J A T. Double power laws, fractals and self-similarity[J]. Applied Mathematical Modelling, 2014, 38(15/16): 4019-4026.
[37] Toda, Akira A. Income dynamics with a stationary double Pareto distribution[J]. Physical Review E, 2011, 83(4): 046122.
[38] Yuan W G, Liu Y. A mixing evolution model for bidirectional microblog user networks[J]. Physica A, 2015, 432: 167-179.
[39] Reed W J. The Pareto law of incomes—an explanation and an extension[J]. Physica A, 2003, 319: 469-486.
[40] Mitzenmacher M. A brief history of generative models for power law and lognormal distributions[J]. Internet Mathematics, 2004, 1(2): 226-251.
[41] Han D D, Qian J H, Ma Y G. Emergence of double scaling law in complex systems[J]. Europhysics Letters, 2011, 94(2): 28006.
[42] Mitzenmacher M. Dynamic models for file sizes and double pareto distributions[J]. Internet Mathematics, 2004, 1(3): 305-333.
[43] Barthélemy M. Spatial networks[J]. Physics Reports, 2013, 499(1-3): 1-101.
[44] Karpiarz M, Fronczak P, Fronczak A. International trade network: fractal properties and globalization puzzle[J]. Physical Review Letters, 2014, 113(24): 248701.
[45] Disdier A C, Head K. The puzzling persistence of the distance effect on bilateral trade[J]. Review of Economics and Statistics, 2008, 90(1): 37-48.
[46] Barabási A L, Albert R. Emergence of scaling in random networks[J]. Science, 1998, 286(5439): 509-511.
[47] Barabási G, Bianconi A L. Competition and multiscaling in evolving networks[J]. Europhysics Letters, 2000, 54(1): 37-43.
[48] Paleari S, Redondi R, Malighetti P. A comparative study of airport connectivity in China, Europe and US: which network provides the best service to passengers?[J]. Transportation Research, 2010, 46(2): 198-210.
[49] Kleinberg J. Navigation in a small world[J]. Nature, 2000, 406: 845.
[50] Li G, Reis S D S, Moreira A A, et al. Towards design principles for optimal transport networks[J]. Physical Review Letters, 2010, 104(1): 018701.
[51] Chen Q, Qian J H, Zhu L, et al. Optimal transport in time-varying small-world networks[J]. Physical Review E, 2016, 93(3): 032321.
[52] Gastner M T, Newman M E J. The spatial structure of networks[J]. European Physical Journal B, 2006, 49(2): 247-252.