An interacting multi - agent system in a network can behave like a nature - inspired Smart System (SS) exhibiting the four salient properties of an Artificial Life System (ALS):(i) Collective, coordinated and efficient (ii) Self -organization and emergence (iii) Power law scaling or scale invariance under emergence (iv) Adaptive, fault tolerant and resilient against damage. We explain how these basic properties can arise among agents through random enabling, inhibiting, preferential attachment and growth of a multiagent system. However,the quantitative understanding of a Smart system with an arbitrary interactive topology is extremely difficult. Hence we cannot design a general purpose programmable Smart system. However, for specific applic...
AbstractThis paper examines the need for complex, adaptive solutions to certain types of complex sit...
A primary motivation for our research in Digital Ecosystems is the desire to exploit the self-organi...
In some circumstances complex adaptive systems composed of numerous self-interested agents can self-...
An interacting multi- agent system in a network can behave like a nature - inspired Smart System (SS...
Abstract-An interacting multi- agent system in a network can behave like a nature- inspired Smart Sy...
An interacting multi-agent system in a network can model the evolution of a Nature-Inspired Smart Sy...
A Complex System (CS) exhibits the four salient properties: (i) Collective, coordinated and efficien...
Although most networks in nature exhibit complex topologies, the origins of such complexity remain u...
Biological networks of interacting agents exhibit similar topological properties for a wide range of...
The computational potential of articial living systems can be studied without knowing the algorithm...
A smart system exhibits the four important properties: (i) Interactive, collective, coordinated and ...
A smart system exhibits the four important properties: (i) Interactive, collective, coordinated and ...
A smart system exhibits the four important properties: (i) Interactive, collective, coordinated and ...
This work concerns the long-term dynamics of a spatiotemporal many-body deterministic model that exh...
The strong and functional couplings among ecological, economic, social, and technological processes ...
AbstractThis paper examines the need for complex, adaptive solutions to certain types of complex sit...
A primary motivation for our research in Digital Ecosystems is the desire to exploit the self-organi...
In some circumstances complex adaptive systems composed of numerous self-interested agents can self-...
An interacting multi- agent system in a network can behave like a nature - inspired Smart System (SS...
Abstract-An interacting multi- agent system in a network can behave like a nature- inspired Smart Sy...
An interacting multi-agent system in a network can model the evolution of a Nature-Inspired Smart Sy...
A Complex System (CS) exhibits the four salient properties: (i) Collective, coordinated and efficien...
Although most networks in nature exhibit complex topologies, the origins of such complexity remain u...
Biological networks of interacting agents exhibit similar topological properties for a wide range of...
The computational potential of articial living systems can be studied without knowing the algorithm...
A smart system exhibits the four important properties: (i) Interactive, collective, coordinated and ...
A smart system exhibits the four important properties: (i) Interactive, collective, coordinated and ...
A smart system exhibits the four important properties: (i) Interactive, collective, coordinated and ...
This work concerns the long-term dynamics of a spatiotemporal many-body deterministic model that exh...
The strong and functional couplings among ecological, economic, social, and technological processes ...
AbstractThis paper examines the need for complex, adaptive solutions to certain types of complex sit...
A primary motivation for our research in Digital Ecosystems is the desire to exploit the self-organi...
In some circumstances complex adaptive systems composed of numerous self-interested agents can self-...