一个受生物学启发的自我修复系统的编程模型

S. George, David Evans, L. Davidson
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引用次数: 62

摘要

软件系统越来越需要能够适应资源可变性、组件故障和恶意入侵等不断变化的条件。这种自我修复系统在持续服务至关重要或人工修复不可行的情况下非常有用。人类设计自我修复系统的努力取得了有限的成功,但大自然在数十亿年的时间里已经发展出了非凡的健壮性和自我修复机制。大自然的程序被编码在DNA中,表现出惊人的密度和表现力。我们认为,软件工程社区可以从围绕生物细胞程序的更广泛的概念以及它们用于稳健地完成复杂任务(如发育、愈合和再生)的策略中学习到大量关于构建系统的知识。我们提出了一种受生物学启发的基于细胞的编程模型,并推测了一种受生物学启发的策略,用于生产健壮的、可扩展的和自我修复的软件系统。
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A biologically inspired programming model for self-healing systems
There is an increasing need for software systems to be able to adapt to changing conditions of resource variability, component malfunction and malicious intrusion. Such self-healing systems can prove extremely useful in situations where continuous service is critical or manual repair is not feasible. Human efforts to engineer self-healing systems have had limited success, but nature has developed extraordinary mechanisms for robustness and self-healing over billions of years. Nature's programs are encoded in DNA and exhibit remarkable density and expressiveness. We argue that the software engineering community can learn a great deal about building systems from the broader concepts surrounding biological cell programs and the strategies they use to robustly accomplish complex tasks such as development, healing and regeneration. We present a cell-based programming model inspired from biology and speculate on biologically inspired strategies for producing robust, scalable and self-healing software systems.
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