In this paper, as a new contribution to the tensor-centric warfare (TCW) series [1] [2] [3] [4], we extend the kinetic TCW-framework to include non-kinetic effects, by addressing a general systems confrontation [5], w...In this paper, as a new contribution to the tensor-centric warfare (TCW) series [1] [2] [3] [4], we extend the kinetic TCW-framework to include non-kinetic effects, by addressing a general systems confrontation [5], which is waged not only in the traditional physical Air-Land-Sea domains, but also simultaneously across multiple non-physical domains, including cyberspace and social networks. Upon this basis, this paper attempts to address a more general analytical scenario using rigorous topological methods to introduce a two-level topological representation of modern armed conflict;in doing so, it extends from the traditional red-blue model of conflict to a red-blue-green model, where green represents various neutral elements as active factions;indeed, green can effectively decide the outcomes from red-blue conflict. System confrontations at various stages of the scenario will be defined by the non-equilibrium phase transitions which are superficially characterized by sudden entropy growth. These will be shown to have the underlying topology changes of the systems-battlespace. The two-level topological analysis of the systems-battlespace is utilized to address the question of topology changes in the combined battlespace. Once an intuitive analysis of the combined battlespace topology is performed, a rigorous topological analysis follows using (co)homological invariants of the combined systems-battlespace manifold.展开更多
借鉴分子扩散的思想,提出一种基于内容扩散的主动缓存机制(Content Diffusion Based Proactive Caching,CDBPC).该机制引入缓存内容浓度的概念来描述不同内容在不同区域内的需求程度,然后根据节点间的缓存内容浓度关系来驱动内容副本在...借鉴分子扩散的思想,提出一种基于内容扩散的主动缓存机制(Content Diffusion Based Proactive Caching,CDBPC).该机制引入缓存内容浓度的概念来描述不同内容在不同区域内的需求程度,然后根据节点间的缓存内容浓度关系来驱动内容副本在网络中的主动推进和迁移,并结合内容的流行度等因素实现了缓存内容的概率性放置,从而达到内容缓存的快速部署和推进,提高为用户提供就近响应概率的目的.仿真结果表明,该机制能有效地降低系统的平均接入代价并提高缓存命中率.展开更多
文摘In this paper, as a new contribution to the tensor-centric warfare (TCW) series [1] [2] [3] [4], we extend the kinetic TCW-framework to include non-kinetic effects, by addressing a general systems confrontation [5], which is waged not only in the traditional physical Air-Land-Sea domains, but also simultaneously across multiple non-physical domains, including cyberspace and social networks. Upon this basis, this paper attempts to address a more general analytical scenario using rigorous topological methods to introduce a two-level topological representation of modern armed conflict;in doing so, it extends from the traditional red-blue model of conflict to a red-blue-green model, where green represents various neutral elements as active factions;indeed, green can effectively decide the outcomes from red-blue conflict. System confrontations at various stages of the scenario will be defined by the non-equilibrium phase transitions which are superficially characterized by sudden entropy growth. These will be shown to have the underlying topology changes of the systems-battlespace. The two-level topological analysis of the systems-battlespace is utilized to address the question of topology changes in the combined battlespace. Once an intuitive analysis of the combined battlespace topology is performed, a rigorous topological analysis follows using (co)homological invariants of the combined systems-battlespace manifold.
文摘借鉴分子扩散的思想,提出一种基于内容扩散的主动缓存机制(Content Diffusion Based Proactive Caching,CDBPC).该机制引入缓存内容浓度的概念来描述不同内容在不同区域内的需求程度,然后根据节点间的缓存内容浓度关系来驱动内容副本在网络中的主动推进和迁移,并结合内容的流行度等因素实现了缓存内容的概率性放置,从而达到内容缓存的快速部署和推进,提高为用户提供就近响应概率的目的.仿真结果表明,该机制能有效地降低系统的平均接入代价并提高缓存命中率.