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A kind of collaboration–competition networks

Author

Listed:
  • Fu, Chun-Hua
  • Zhang, Zeng-Ping
  • Chang, Hui
  • Tao, Jian-Ru
  • Chen, Zhuo-Hui
  • Dai, Yun-Long
  • Zhang, Wei
  • He, Da-Ren

Abstract

We propose describing a kind of cooperation–competition systems by node-weighted bipartite graphs. In such systems the nodes can be divided into two types. One expresses a kind of activities, organizations or events, named “acts”; and another expresses the “actors” participating in some acts. In each act the actors basically show collaboration relationship with each other, however they play different roles in the cooperation. Usually every actor tries to play the most important role; therefore the role difference can be regarded as a kind of competition. The node weight usually signifies the role or “importance degree” of each actor. We propose using some statistical properties for the description of such kind of systems. The properties without considering node weight can describe the cooperation situation and configuration. The properties with node weight may describe the competition results. Two example systems are reported to show the description method and the corresponding empirical investigation results. One is the undergraduate elective network, and another the library network of Yangzhou University. The description method may be effective for the similar systems in different fields.

Suggested Citation

  • Fu, Chun-Hua & Zhang, Zeng-Ping & Chang, Hui & Tao, Jian-Ru & Chen, Zhuo-Hui & Dai, Yun-Long & Zhang, Wei & He, Da-Ren, 2008. "A kind of collaboration–competition networks," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 387(5), pages 1411-1420.
  • Handle: RePEc:eee:phsmap:v:387:y:2008:i:5:p:1411-1420
    DOI: 10.1016/j.physa.2007.10.043
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    Citations

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    Cited by:

    1. Yang, Xu-Hua & Chen, Guang & Sun, Bao & Chen, Sheng-Yong & Wang, Wan-Liang, 2011. "Bus transport network model with ideal n-depth clique network topology," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 390(23), pages 4660-4672.
    2. Xu, Xiu-Lian & Fu, Chun-Hua & Chang, Hui & He, Da-Ren, 2011. "An evolution model of complex systems with simultaneous cooperation and competition," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 390(21), pages 3719-3726.
    3. Hu, Baoyu & Feng, Shumin & Nie, Cen, 2017. "Bus transport network of Shenyang considering competitive and cooperative relationship," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 466(C), pages 259-268.
    4. Yan, Li & Cao, Huiying & Gao, Chao & Wang, Zhen & Li, Xuelong, 2023. "Mining of book-loan behavior based on coupling relationship analysis," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 613(C).
    5. Feng, Ai-Xia & Fu, Chun-Hua & Xu, Xiu-Lian & Zhou, Yue-Ping & Chang, Hui & Wang, Jian & He, Da-Ren & Feng, Guo-Lin, 2012. "An extended clique degree distribution and its heterogeneity in cooperation–competition networks," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 391(7), pages 2454-2462.

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