A Fast Regression Testing Method Using for EMS System Engineering Project

Kai Xie, Chao Sun
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Abstract

EMS(Energy Management System) is a software system with complex structure, which is used in power grid dispatching automation. In the life cycle of the system, it will go through a number of tests, such as FAT(factory test), SAT(acceptance test), etc, whose test cases will be as many as ten thousand. In the maintenance of EMS system, requirements may be often changed, which motivates the component modification to create new versions and their accompany tests. Regression testing strategies aim at the retest for modification affection in EMS software maintenance. This paper presents a EMS system regression testing method based on a new Component Testing Association Model. In this method, previously executed test cases are selected to generate the minimal regression test suite by the identification and impact analysis for the modification-affected component groups. Compared with traditional methods, our approach focus on the complicated interaction between components, which is more applicable to component system regression testing. Our method greatly saves the EMS system regression testing costs which go through the functional adjustment. In practical projects the execution of a moderate scale regression test was reduced by about 2 weeks.
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用于EMS系统工程项目的快速回归测试方法
能源管理系统(EMS)是一个结构复杂的软件系统,主要用于电网调度自动化。在系统的生命周期中,它将经历许多测试,如FAT(出厂测试)、SAT(验收测试)等,其测试用例将多达一万个。在EMS系统的维护中,需求可能经常发生变化,这促使组件修改以创建新版本及其伴随的测试。回归测试策略的目的是对EMS软件维护中修改的影响进行重测。提出了一种基于构件测试关联模型的EMS系统回归测试方法。在这种方法中,通过对受修改影响的组件组的识别和影响分析,选择先前执行的测试用例来生成最小的回归测试套件。与传统方法相比,我们的方法关注组件之间复杂的交互,更适用于组件系统的回归测试。该方法大大节省了EMS系统经过功能调整的回归测试成本。在实际项目中,中等规模回归测试的执行时间减少了约2周。
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