良好质量的软件产品是客户的基本诉求,而良好质量的软件需要更多的测试手段和投入,因此,软件测试是软件研发过程中一个非常重要的环节,会占用大量的项目时间和人力成本,如何高效、及时地完成测试工作一直是软件测试领域的难题之一。随...良好质量的软件产品是客户的基本诉求,而良好质量的软件需要更多的测试手段和投入,因此,软件测试是软件研发过程中一个非常重要的环节,会占用大量的项目时间和人力成本,如何高效、及时地完成测试工作一直是软件测试领域的难题之一。随着移动互联网应用行业的迅猛发展,软件的规模和复杂度不断增加,传统的软件测试通过人工手动去设计和执行测试用例,成本高、效率低、局限性大。近年来,人工智能技术在软件测试自动化领域的应用越来越受到关注。本文分析总结了人工智能软件测试自动化技术的优势、应用挑战和未来的发展方向,并提出了一种自动化的测试框架研究实践。人工智能技术在提高软件测试自动化领域的效率和测试质量方面有较大优势,未来的有关研究和应用将会继续深入,推动人工智能技术在软件测试行业的发展。Good quality software products are the basic demands of customers, and good quality software requires more testing methods and investment. Therefore, software testing is a very important part of the software development process, which will occupy a lot of project time and labor costs. How to efficiently and timely complete testing work has always been one of the challenges in the field of software testing. With the rapid development of the mobile Internet application industry, the scale and complexity of software are increasing. Traditional software testing designs and executes test cases manually, which is costly, inefficient and limited. In recent years, the application of artificial intelligence technology in software testing automation has received increasing attention. This article analyzes and summarizes the advantages, application challenges, and future development directions of artificial intelligence software testing automation technology, and proposes an automated testing framework research practice. Artificial intelligence technology has significant advantages in improving the efficiency and quality of software testing automation. Future research and applications will continue to deepen, promoting the development of artificial intelligence technology in the software testing industry.展开更多
针对馈线自动化的功能测试问题,为避免配电终端接入实际配电网进行测试实验可能对电力系统的安全运行造成不利影响,同时为了提高测试的灵活性、效率性和正确性,文中提出了一种虚实结合的馈线自动化测试方法,利用RTLAB(Real Time Laborat...针对馈线自动化的功能测试问题,为避免配电终端接入实际配电网进行测试实验可能对电力系统的安全运行造成不利影响,同时为了提高测试的灵活性、效率性和正确性,文中提出了一种虚实结合的馈线自动化测试方法,利用RTLAB(Real Time Laboratory)实时全数字仿真器搭建配电网并模拟故障运行,设计具备保护、重合闸、就地式FA(Feeder Automation)功能的仿真型虚拟配电终端用于开展RTLAB实时仿真器与物理模型硬件在环仿真研究。文中设计的基于高性能线性功率放大器的接口实施方案被测配电终端接入测试系统形成闭环,构建了虚实结合的馈线自动化仿真测试环境。通过开展基本故障处理能力测试和容错能力测试的硬件在环仿真实验,验证了接口装置的准确性,同时验证了测试平台的有效性。展开更多
文摘良好质量的软件产品是客户的基本诉求,而良好质量的软件需要更多的测试手段和投入,因此,软件测试是软件研发过程中一个非常重要的环节,会占用大量的项目时间和人力成本,如何高效、及时地完成测试工作一直是软件测试领域的难题之一。随着移动互联网应用行业的迅猛发展,软件的规模和复杂度不断增加,传统的软件测试通过人工手动去设计和执行测试用例,成本高、效率低、局限性大。近年来,人工智能技术在软件测试自动化领域的应用越来越受到关注。本文分析总结了人工智能软件测试自动化技术的优势、应用挑战和未来的发展方向,并提出了一种自动化的测试框架研究实践。人工智能技术在提高软件测试自动化领域的效率和测试质量方面有较大优势,未来的有关研究和应用将会继续深入,推动人工智能技术在软件测试行业的发展。Good quality software products are the basic demands of customers, and good quality software requires more testing methods and investment. Therefore, software testing is a very important part of the software development process, which will occupy a lot of project time and labor costs. How to efficiently and timely complete testing work has always been one of the challenges in the field of software testing. With the rapid development of the mobile Internet application industry, the scale and complexity of software are increasing. Traditional software testing designs and executes test cases manually, which is costly, inefficient and limited. In recent years, the application of artificial intelligence technology in software testing automation has received increasing attention. This article analyzes and summarizes the advantages, application challenges, and future development directions of artificial intelligence software testing automation technology, and proposes an automated testing framework research practice. Artificial intelligence technology has significant advantages in improving the efficiency and quality of software testing automation. Future research and applications will continue to deepen, promoting the development of artificial intelligence technology in the software testing industry.
文摘针对馈线自动化的功能测试问题,为避免配电终端接入实际配电网进行测试实验可能对电力系统的安全运行造成不利影响,同时为了提高测试的灵活性、效率性和正确性,文中提出了一种虚实结合的馈线自动化测试方法,利用RTLAB(Real Time Laboratory)实时全数字仿真器搭建配电网并模拟故障运行,设计具备保护、重合闸、就地式FA(Feeder Automation)功能的仿真型虚拟配电终端用于开展RTLAB实时仿真器与物理模型硬件在环仿真研究。文中设计的基于高性能线性功率放大器的接口实施方案被测配电终端接入测试系统形成闭环,构建了虚实结合的馈线自动化仿真测试环境。通过开展基本故障处理能力测试和容错能力测试的硬件在环仿真实验,验证了接口装置的准确性,同时验证了测试平台的有效性。