Fitness preferential attachment as a driving mechanism in bitcoin transaction network
Bitcoin is the earliest cryptocurrency and among the most successful ones to date. Recently, its dynamical evolution has attracted the attention of the research community due to its completeness and richness in historical records. In this paper, we focus on the detailed evolution of bitcoin trading...
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sg-ntu-dr.10356-924462023-02-28T19:24:25Z Fitness preferential attachment as a driving mechanism in bitcoin transaction network Aspembitova, Ayana Feng, Ling Melnikov, Valentin Chew, Lock Yue Sendiña-Nadal, Irene School of Physical and Mathematical Sciences Data Science and Artificial Intelligence Research Centre Complexity Institute Fitness Preferential Attachment Bitcoin Transaction Network Science::Physics Bitcoin is the earliest cryptocurrency and among the most successful ones to date. Recently, its dynamical evolution has attracted the attention of the research community due to its completeness and richness in historical records. In this paper, we focus on the detailed evolution of bitcoin trading with the aim of elucidating the mechanism that drives the formation of the bitcoin transaction network. Our empirical investigation reveals that although the temporal properties of the transaction network possesses scale-free degree distribution like many other networks, its formation mechanism is different from the commonly assumed models of degree preferential attachment or wealth preferential attachment. By defining the fitness value of each node as the ability of the node to attract new connections, we have instead uncovered that the observed scale-free degree distribution results from the intrinsic fitness of each node following a power-law distribution. Our finding thus suggests that the “good-get-richer” rather than the “rich-get-richer” paradigm operates within the bitcoin ecosystem. Based on these findings, we propose a model that captures the temporal generative process by means of a fitness preferential attachment and data-driven birth/death mechanism. Our proposed model is able to produce structural properties in good agreement with those obtained from the empirical bitcoin network. Published version 2019-09-12T04:54:46Z 2019-12-06T18:23:25Z 2019-09-12T04:54:46Z 2019-12-06T18:23:25Z 2019 Journal Article Aspembitova, A., Feng, L., Melnikov, V., & Chew, L. Y. (2019). Fitness preferential attachment as a driving mechanism in bitcoin transaction network. PLOS ONE, 14(8), e0219346-. doi:10.1371/journal.pone.0219346 https://hdl.handle.net/10356/92446 http://hdl.handle.net/10220/49928 10.1371/journal.pone.0219346 en PLOS ONE © 2019 Aspembitova et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. 20 p. application/pdf |
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Fitness Preferential Attachment Bitcoin Transaction Network Science::Physics Aspembitova, Ayana Feng, Ling Melnikov, Valentin Chew, Lock Yue Fitness preferential attachment as a driving mechanism in bitcoin transaction network |
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Bitcoin is the earliest cryptocurrency and among the most successful ones to date. Recently, its dynamical evolution has attracted the attention of the research community due to its completeness and richness in historical records. In this paper, we focus on the detailed evolution of bitcoin trading with the aim of elucidating the mechanism that drives the formation of the bitcoin transaction network. Our empirical investigation reveals that although the temporal properties of the transaction network possesses scale-free degree distribution like many other networks, its formation mechanism is different from the commonly assumed models of degree preferential attachment or wealth preferential attachment. By defining the fitness value of each node as the ability of the node to attract new connections, we have instead uncovered that the observed scale-free degree distribution results from the intrinsic fitness of each node following a power-law distribution. Our finding thus suggests that the “good-get-richer” rather than the “rich-get-richer” paradigm operates within the bitcoin ecosystem. Based on these findings, we propose a model that captures the temporal generative process by means of a fitness preferential attachment and data-driven birth/death mechanism. Our proposed model is able to produce structural properties in good agreement with those obtained from the empirical bitcoin network. |
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Sendiña-Nadal, Irene |
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Sendiña-Nadal, Irene Aspembitova, Ayana Feng, Ling Melnikov, Valentin Chew, Lock Yue |
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Article |
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Aspembitova, Ayana Feng, Ling Melnikov, Valentin Chew, Lock Yue |
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Aspembitova, Ayana |
title |
Fitness preferential attachment as a driving mechanism in bitcoin transaction network |
title_short |
Fitness preferential attachment as a driving mechanism in bitcoin transaction network |
title_full |
Fitness preferential attachment as a driving mechanism in bitcoin transaction network |
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Fitness preferential attachment as a driving mechanism in bitcoin transaction network |
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Fitness preferential attachment as a driving mechanism in bitcoin transaction network |
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fitness preferential attachment as a driving mechanism in bitcoin transaction network |
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2019 |
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https://hdl.handle.net/10356/92446 http://hdl.handle.net/10220/49928 |
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