Design of self-managing dependable systems with UML and fault tolerance patterns

M. Tichy, Daniela Schilling, H. Giese
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引用次数: 33

Abstract

The development of dependable software systems is a costly undertaking. Fault tolerance techniques as well as self-repair capabilities usually result in additional system complexity which can even spoil the intended improvement with respect to dependability. We therefore present a pattern-based approach for the design of service-based systems which enables self-managing capabilities by reusing proven fault tolerance techniques in form of Fault Tolerance Patterns. The pattern specification consists of a service-based architectural design and deployment restrictions in form of UML deployment diagrams for the different architectural services. The architectural design is reused when designing the system architecture. The deployment restrictions are employed to determine valid deployment scenarios for an application. During run-time the same restrictions are at first used to automatically map additional services on suitable nodes. If node crashes are detected, we secondly employ the restrictions to guide the self-repair of the system in such a way that only suitable repair decisions are made.
基于UML和容错模式的自管理可靠系统设计
开发可靠的软件系统是一项昂贵的工作。容错技术以及自我修复能力通常会导致额外的系统复杂性,这甚至会破坏有关可靠性的预期改进。因此,我们提出了一种基于模式的方法来设计基于服务的系统,该系统通过以容错模式的形式重用经过验证的容错技术来实现自我管理功能。模式规范包括基于服务的体系结构设计和不同体系结构服务的UML部署图形式的部署限制。在设计系统体系结构时重用体系结构设计。部署限制用于确定应用程序的有效部署场景。在运行期间,首先使用相同的限制将额外的服务自动映射到合适的节点上。如果检测到节点崩溃,我们其次使用这些限制来指导系统的自我修复,从而只做出合适的修复决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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