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An Idiotypic Solution Sieve for Selecting the Best Performing Solutions in Real-World Distributed Intelligence

机译:一个独特的解决方案筛选器,用于在现实世界的分布式智能中选择性能最好的解决方案

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Jerne's Idiotypic Network theory features autonomous network formation, adaptation, learning and self-stabilization, all of which find extensive applications in computational realm. Researchers have used this model in a myriad of applications, however, the use of this model in real networked environments has hardly been addressed. This paper describes an Idiotypic Sieve to filter out the optimal solutions from a set of available solutions for a set of heterogeneous problems that could occur asynchronously or concurrently across a real network. The Idiotypic Sieve described herein, is conceived by emulating an Idiotypic network wherein antibodies (solutions) within a real physical network asynchronously interact with one another and also with the antigens (problems) in a distributed and decentralized manner and stimulate and suppress one another consequently changing their respective global populations across the network. The antibodies (solutions) are provided the much required mobility across the network by a set of mobile agents that autonomously patrol and migrate to nodes that are invaded by the antigens (problems). Emulation results carried out on a real network portrayed in this paper, show the effectiveness of the Idiotypic Sieve in generating and controlling the populations of both optimal and generic solutions to the heterogeneous set of problems.
机译:耶恩的独特型网络理论具有自治网络的形成,适应,学习和自我稳定的特点,所有这些在计算领域中都有广泛的应用。研究人员已在众多应用程序中使用了此模型,但是,几乎没有解决在实际的网络环境中使用此模型的问题。本文介绍了一种“独特型筛选器”,用于从一组可用的解决方案中筛选出最佳解决方案,以解决可能在实际网络中异步或同时发生的一组异构问题。本文所述的独特型筛是通过模拟一种独特型网络来构想的,其中真实物理网络中的抗体(溶液)以分布式和分散的方式彼此异步地相互作用,并且还与抗原(问题)异步相互作用,从而刺激和抑制彼此的变化网络中各自的全球人口。一组移动代理可自动在网络上移动并迁移到受抗原入侵的节点(问题),从而为抗体(溶液)提供了跨网络非常需要的移动性。在本文描述的真实网络上进行的仿真结果表明,独特型筛网在生成和控制针对异构问题的最优解和通用解的总体中的有效性。

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