Extending an OWL Web Node with Reactive Behavior

Author(s):  
Wolfgang May ◽  
Franz Schenk ◽  
Elke von Lienen
Keyword(s):  
2011 ◽  
Vol 23 ◽  
pp. 728-732 ◽  
Author(s):  
Antonio Benitez ◽  
Jorge de la Calleja ◽  
Ma. A. Medina ◽  
Eduardo López ◽  
Gabriel Martínez

2002 ◽  
Vol 41 (11) ◽  
pp. 2785-2791 ◽  
Author(s):  
Stéphanie Ouvrard ◽  
Marie-Odile Simonnot ◽  
Michel Sardin

Author(s):  
Alejandro Rodríguez ◽  
Alexander Grushin ◽  
James A. Reggia

Drawing inspiration from social interactions in nature, swarm intelligence has presented a promising approach to the design of complex systems consisting of numerous, simple parts, to solve a wide variety of problems. Swarm intelligence systems involve highly parallel computations across space, based heavily on the emergence of global behavior through local interactions of components. This has a disadvantage as the desired behavior of a system becomes hard to predict or design. Here we describe how to provide greater control over swarm intelligence systems, and potentially more useful goal-oriented behavior, by introducing hierarchical controllers in the components. This allows each particle-like controller to extend its reactive behavior in a more goal-oriented style, while keeping the locality of the interactions. We present three systems designed using this approach: a competitive foraging system, a system for the collective transport and distribution of goods, and a self-assembly system capable of creating complex 3D structures. Our results show that it is possible to guide the self-organization process at different levels of the designated task, suggesting that self-organizing behavior may be extensible to support problem solving in various contexts.


Author(s):  
Jane S. Murray ◽  
Peter Politzer

The quest for improved methods for elucidating and predicting the reactive behavior of molecules and other chemical species is a continuing theme of theoretical chemistry. This has led to the introduction of a variety of indices of reactivity; some are rather arbitrary, while others are more or less directly related to real physical properties. They have been designed and are used to provide some quantitative measure of the chemical activities of various sites and/or regions of the molecule. In this chapter our focus is on one of these indices, the electrostatic potential V(r) that is created in the space around a molecule by its nuclei and electrons. V(r) can be computed rigorously, given the electronic density function ρ(r), by Eq. (3.1).


Author(s):  
Korhan Arun ◽  
Tekin Yenigün

Technology alters the structure of the systems in the finance and service sectors. Nevertheless, technology has been chancing operating systems and as a source to the emergence of new business models. The boundaries of departments in enterprises are weakened and disappeared, these changes give rise to the emergence of showing less commitment in the behavior of employees. In modern business the survival of the organizations does not seem possible, which see success in reactive behavior of the strategy-structure-interaction classical triple. Critical success factor is based foresight and proactivity in all areas of operations including organizing. In this chapter, enterprise organizations' financial departments and resulting changes of structures of the financial sector entities, the effects of this structural changes in the operation system with the new business models is discussed, the tips on how financial system's agencies and departments can fulfill the requirements of proactive nature revealed is studied.


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