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MATRIX-AGENT FRAMEWORK: A VIRTUAL PLATFORM FOR MULTI-AGENTS
作者姓名:Clement H.C. LEUNG  Gitesh K. RAIKUNDALIA
作者单位:School of Computer Science and Mathematics Victoria University PO Box 14428 Melbourne City MC 8001 Australia,School of Computer Science and Mathematics Victoria University PO Box 14428 Melbourne City MC 8001 Australia
摘    要:1. Introduction The system development life cycle in software engineering has gradually moved from traditional pipelining-like processes towards more open and flexible processes. Multi-agent technology has become one of the major directions of future software engineering development as it has the capacity to play a key role in current and future computer science and its application (Weiss, 1999). In the modern business and technology environment, organisational information systemsare facing co…

关 键 词:决策支持系统  多Agent  拓扑分析  虚拟主体

Matrix-agent framework: A virtual platform for multi-agents
Clement H.C. LEUNG,Gitesh K. RAIKUNDALIA.Matrix-agent framework: A virtual platform for multi-agents[J].Journal of Systems Science and Systems Engineering,2006,15(4):436-456.
Authors:Hao Lan Zhang  Clement HC Leung  Gitesh K Raikundalia
Institution:School of Computer Science and Mathematics, Victoria University PO Box 14428 Melbourne City MC 8001 Australia
Abstract:Multi-agent technology has been applied extensively to many areas, including Decision Support Systems (DSS). However, the applications of multi-agent technology in DSS are still very preliminary. Most of the current agent frameworks, such as middle-agent-based or agent-facilitator-based frameworks, are basically agent-to-agent model. These agent-based frameworks often neglect the living environment for agents and they suffer from: (i) inability to adapt to the environment, (ii) inability to self-upgrade, and (iii) inefficiency in information acquisition. Here, we introduce a recently proposed multi-agent framework, namely Agent-based Open Connectivity for Decision Support Systems (AOCD). In this new framework, the communication and cooperation between agents are through a key component, the Matrix, which provides a virtual platform for agents. We use a unified Matrices framework to solve the bottleneck problem in the AOCD framework. Our experimental results based on different agent network topologies indicate that the hybrid topology presents superior performance compared with the centralised and decentralised topologies.
Keywords:Multi-agent  agent topology analysis  DSS  virtual agent society  AOCD
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