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Emulating Runtime Workflow Adaptation and Aspect Weaving by Recursive Rule-Based Sub-Process Selection - A Model Transformation Approach

机译:通过基于规则的递归子过程选择模拟运行时工作流适应和方面编织-一种模型转换方法

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摘要

Most modern contributions for flexible workflow management propose proprietary solutions or extensions of standard workflow execution engines to enable the required runtime control-flow deviations. This fact results from the widespread viewpoint that for the realization of deviations, manipulations should be performed directly on the concerned workflow model or instance. It is neglected that most contemporary workflow management systems already contain a very strong concept for runtime deviations, namely sub-processes which can be replaced with new versions at any time. In this paper, we show that execution flexibility concepts like variant construction, aspect orientation and runtime adaptation can be emulated by regular workflow models. For this purpose, we propose a generic automated design-time model transformation technique which extracts variant workflow parts to sub-processes, makes use of "adaptation processes" following a specific pattern syntax and generates a selector structure performing recursive sub-process calls supported by a rule engine. Its main benefit consists in a general reduction of implementation efforts for flexible workflow engines. For evaluation purposes, a reference implementation of our model transformation approach was realized in SAP Net Weaver BPM/BRM and produces fully BPMN2 compliant executable artifacts together with a rule set, which is used as the main interface for the specification of frequently changing process deviations.
机译:对于灵活的工作流管理的大多数现代贡献提出了专有的解决方案或标准工作流执行引擎的扩展,以实现所需的运行时控制流偏差。这个事实是从普遍的观点得出的,为了实现偏差,应该直接在有关的工作流程模型或实例上执行操作。可以忽略的是,大多数现代工作流管理系统已经包含了一个非常强的运行时偏差概念,即可以随时用新版本替换的子过程。在本文中,我们展示了常规的工作流模型可以模拟执行灵活性的概念,例如变体构造,方面方向和运行时适应。为此,我们提出了一种通用的自动化设计时模型转换技术,该技术可将变体工作流部分提取到子流程中,并按照特定的模式语法使用“适应过程”,并生成执行递归子流程调用的选择器结构,该调用由规则引擎。它的主要优点在于可以总体上减少灵活工作流引擎的实施工作。为了进行评估,我们在SAP Net Weaver BPM / BRM中实现了模型转换方法的参考实现,并生成了与BPMN2完全兼容的可执行工件以及规则集,该规则集用作规范频繁变化的流程偏差的主要界面。

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