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Conceptual Modeling Versus User Story Mapping: Which is the Best Approach to Agile Requirements Engineering?

机译:概念建模与用户故事映射:这是敏捷要求工程的最佳方法?

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User stories are primary requirements artifacts within agile methods. They are comprised of short sentences written in natural language expressing units of functionality for the to-be system. Despite their simple format, when modelers are faced with a set of user stories they might be having difficulty in sorting them, evaluating their redundancy, and assessing their relevancy in the effort to prioritize them. The present paper tests the ability of modelers to understand the requirements problem through a visual representation (named the Rationale Tree) which is a conceptual model and is built out of a user stories' set. The paper is built upon and extends previous work relating to the feasibility of generating such a representation out of a user stories' set by comparing the performance of the Rationale Tree with the User Story Mapping approach. This is achieved by performing a two-group quantitative comparative study. The identified comparative variables for each method were understandability, recognition of missing requirements/epics/themes, and adaptability. The Rational Tree was not easy to understand and did not perform as anticipated in assisting with the recognition of missing requirements/epics/themes. However, its employment allowed modelers to offer qualitative representations of a specific software problem. Overall, the present experiment evaluates whether a conceptual model could be a consistent solution towards the holistic comprehension of a software development problem within an agile setting, compared to more 'conventional' techniques used so far.
机译:用户故事是敏捷方法中的主要要求伪影。它们由以自然语言编写的短句组成,表达了待系统的功能单位。尽管格式简单,但在建模者面临着一组用户故事时,它们可能难以对其进行排序,评估其冗余,并在优先考虑它们的努力中评估其相关性。本文测试了建模者通过视觉表示(命名为理由树)来了解要求问题的能力,这是一个概念模型,并由用户故事集中构建。本文建立在后面并扩展了与通过比较了基本树的性能与用户故事映射方法来生成用户故事的可行性的先前工作。这是通过执行双组定量比较研究来实现的。每个方法的识别的比较变量是可易于理解的,识别缺失的要求/史诗/主题和适应性。理性的树并不容易理解,并且没有在援引缺失要求/史诗/主题的识别方面进行。但是,它的就业允许建模者提供特定软件问题的定性表示。总体而言,与到目前为止使用的更多“常规”技术相比,本实验评估了概念模型是否可以是达到敏捷环境中软件开发问题的整体理解的一致解决方案。

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