Papers by Keyword: Internetware

Paper TitlePage

Abstract: Dynamic evolving characteristic is the key of modeling internetware architecture. However, it is lack of formal description and theoretical analysis for model dynamic evolution for the moment, a new kind of internetware dynamic evolving modeling method based on Seal-Calculus of process algebra is presented and formalized analysis is conducted for evolving process in practical applications, which is convenient to express obviously and strictly the dynamic process of the system, providing a new means and theoretical basis.
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Abstract: To solve the problem of trust measurement in internetware resource entities, this paper presented a model for resource trust propagation based on complex network properties, meanwhile, it introduced trust evaluation mechanism used fuzzy set theory, fully considered the features of hierarchical trust propagation, and emphasized on characteristics of adaptability, robustness and resource-saving in modeling.
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Abstract: Expand the self-awareness and self-(decision-making) ability of agent, unify the definition about process, resource and service, then this paper builds volunteer-oriented agent internetware service logic, and designs the formal models’ design related to corresponding volunteer computing, furthermore, researches for its method sequentially. About architecture-centric service system, it is achieved as volunteer granularities and interactive relationship. On this basis, it gets to improve transparency of architecture about business implementation and autonomous ability of analysis decision-making.
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Abstract: Aiming at the forward topics of self-adapting Internetware, relying on the practical software engineering technology and previous research achievements of tackling key problems of SoftMan, the paper puts forward a novel component model ——SMC(SoftMan Component), which processes reflectivity, opening, adapting and supporting nested assembly and self-adjusting its internal architecture. Furthermore, the basic design specifications of APIs are described in detail. By the special structure of Component Body, SMC forms a hierarchical management domain which is of explicit constraint of father-child between component and its children, and thus it flexibly integrates control mechanisms for sub-components, such as interface introspection, lifecycle, interaction binding, dynamic configuration, etc., into its pluggable controllers so as to be endowed with the ability to change its behavior and architecture when the application must evolve to cope with user requirements and new context. Initial experiments demonstrate that SMC can give effective support for dynamic reconfiguration during running, and it takes on own technical characteristics compared with other component models.
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