On the algebraic properties of concrete solution aggregation

IF 2.4 Q1 Computer Science SICS Software-Intensive Cyber-Physical Systems Pub Date : 2019-02-06 DOI:10.1007/s00450-019-00400-1
Michael Falkenthal, Uwe Breitenbücher, Johanna Barzen, Frank Leymann
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引用次数: 5

Abstract

Pattern languages are a pervasive means in many domains to capture proven solutions for recurring problems in an abstract manner. To improve reusability, they abstract from implementation details such as specific technologies or environments. However, while this abstraction provides a significant benefit as patterns can be applied to solve different manifestations of the general problem, this also leads to time-consuming efforts when patterns have to be applied as concrete solutions have to be elaborated and implemented over and over again. Moreover, as patterns are intended to be applied in combination with other patterns, the individual concrete solutions have to be aggregated into an overall solution, too. However, this immensely increases necessary expertise, required effort, and complexity. Therefore, we present a systematic approach that allows to (i) reuse and (ii) combine already developed concrete solutions on the basis of selected sequences of patterns. We establish the theory of solution algebras, which perceive concrete solutions and aggregation operators as mathematical objects. Thereby, domain-specific operators allow to combine and aggregate concrete solutions of patterns, which we validate in several different domains.
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混凝土溶液聚集的代数性质
模式语言在许多领域都是一种普遍的方法,以抽象的方式为反复出现的问题捕获经过验证的解决方案。为了提高可重用性,他们从具体的技术或环境等实现细节中抽象出来。然而,虽然这种抽象提供了显著的好处,因为模式可以应用于解决一般问题的不同表现形式,但当必须将模式应用于必须反复阐述和实现的具体解决方案时,这也会导致耗费时间的工作。此外,由于模式打算与其他模式结合应用,因此单个具体解决方案也必须聚合为一个整体解决方案。然而,这极大地增加了必要的专业知识、所需的努力和复杂性。因此,我们提出了一种系统的方法,允许(i)重用和(ii)在选定的模式序列的基础上结合已经开发的具体解决方案。我们建立了解代数理论,它将具体解和聚集算子视为数学对象。因此,领域特定的操作符允许组合和聚合模式的具体解决方案,我们在几个不同的领域中验证这些解决方案。
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SICS Software-Intensive Cyber-Physical Systems
SICS Software-Intensive Cyber-Physical Systems COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
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