面向自适应系统的干体系结构描述语言

A. Marco, Francesco Gallo, P. Inverardi, R. Ippoliti
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引用次数: 0

摘要

在软件领域,自适应系统能够在运行时修改它们的行为,以响应内部和外部的变化。在生命科学中,生物细胞是一种力量实体,能够以一种完全分散的方式适应(不可预测的)环境。受来自细胞生命周期的适应机制的启发,我们正在研究一种新的自适应软件系统架构范例。为了解决自适应系统的复杂性和多样性,我们发现细胞生命周期的三个主要特征很有趣:1)它们能够从最一般的行为(即干细胞)开始特殊化行为,2)细胞能够定期使用程序性死亡机制(凋亡)来摆脱过时的行为。Iii)一种建筑原理,通过维持一般/通用细胞(干细胞)和专门/劳动细胞之间的正确平衡,使生物体成为非常高效的系统。在这篇海报中,我们通过提出将成为STEM架构描述语言一部分的新角色和架构结构来展示我们的STEM范式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards a Stem Architecture Description Language for Self-Adaptive Systems
In the software domain, self-adaptive systems are able to modify their behavior at run-time to respond to internal and external changes. In life science, biological cells are power entities able to adapt to the (unpredictable) situations they incur in, in a complete decentralized fashion. We are working on a new architectural paradigm for self-adaptive software systems inspired by the adaptation mechanism coming from the cell life-cycle. In order to address the complexity and the variety of self adaptive systems we found that the cell lifecycle is interesting for three main features: i) their ability to specialize behaviors starting from the most general one, i.e. the stem cell, ii) the cell ability to make regular use of the programmed death mechanism (apoptosis) to get rid of obsolete behaviors. iii) a sort of architectural principle that allows the living organisms to be very efficient systems by maintaining the right trade off between general/universal cells (stem cells)and specialized/labouring ones. In this poster paper we present our STEM paradigm by proposing new roles and architectural structure that will be part of the STEM architecture description language.
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