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Mogei Wang

Researcher at Dalian University of Technology

Publications -  10
Citations -  73

Mogei Wang is an academic researcher from Dalian University of Technology. The author has contributed to research in topics: Synchronization of chaos & Synchronization. The author has an hindex of 6, co-authored 10 publications receiving 66 citations.

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The Correlation Fractal Dimension of Complex Networks

TL;DR: The fractality of complex networks is studied by estimating the correlation dimensions of the networks and the previous algorithms of estimating the box dimension achieves a significant reduction in time complexity.
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Inhomogeneity of epidemic spreading

TL;DR: The simulation results show that the epidemic spreads inhomogeneously in static and dynamic complex networks in both cases and the inhomogeneity of the epidemic spreading becomes smaller with increasing speed of moving individuals and almost disappears when the speed is high enough.
Journal Article

A New Complex Network Model with Hierarchical and Modular Structures

TL;DR: The results show that, although this model does not have a power law degree distribution, it possesses a high clustering coefficient and aPower law clustering function, which indicates that the model has a modular and hierarchical organization, even if the degree distribution does not follow a powerlaw.
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Chaos synchronization basing on symbolic dynamics with nongenerating partition.

TL;DR: It is found that when sustaining chaos synchronization with nongenerating partition, the synchronization error will be larger than a critical value, although the required coupled channel capacity can be smaller than the case of using a generating partition.
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The least channel capacity for chaos synchronization

TL;DR: This study uses symbolic dynamics and the automaton reset sequence to distinguish the information that is required in identifying the current drive word and obtaining the synchronization and shows that the least channel capacity that is sufficient to transmit the distinguished information and attain the synchronization of arbitrarily high precision is h(KS).