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Self-adaptation and Dynamic Environment Experiments with Evolvable Virtual Machines

机译:具有可进化虚拟机的自适应和动态环境实验

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Increasing complexity of software applications forces researchers to look for automated ways of programming and adapting these systems. Self-adapting, self-organising software system is one of the possible ways to tackle and manage higher complexity. A set of small independent problem solvers, working together in a dynamic environment, solving multiple tasks, and dynamically adapting to changing requirements is one way of achieving true self-adaptation in software systems. Our work presents a dynamic multi-task environment and experiments with a self-adapting software system. The Evolvable Virtual Machine (EVM) architecture is a model for building complex hierarchically organised software systems. The intrinsic properties of EVM allow the independent programs to evolve into higher levels of complexity, in a way analogous to multi-level, or hierarchical evolutionary processes. The EVM is designed to evolve structures of self-maintaining, self-adapting ensembles, that are open-ended and hierarchically organised. This article discusses the EVM architecture together with different statistical exploration methods that can be used with it. Based on experimental results, certain behaviours that exhibit self-adaptation in the EVM system are discussed.
机译:越来越多的软件应用程序的复杂性迫使研究人员寻找自动编程和适应这些系统的方式。自适应,自组织软件系统是解决和管理更高复杂性的可能方法之一。一组小型独立问题求解器,在动态环境中一起工作,解决多项任务,并动态适应改变要求是在软件系统中实现真实自适应的一种方式。我们的工作提供了一种动态的多任务环境和自适应软件系统的实验。可进化的虚拟机(EVM)架构是构建复杂分层组织的软件系统的模型。 EVM的内在特性允许独立的程序以类似于多层次或分层进化过程的方式进化到更高水平的复杂性。 EVM旨在发展自我保持,自适应合奏的结构,这些结构是开放式和分层组织的。本文与可与其一起使用的不同统计探索方法一起讨论EVM架构。基于实验结果,讨论了在EVM系统中表现出自适应的某些行为。

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