Research on an autonomous and controllable portable universal interface test platform

Yiming Xu, Baoqiang Liu, Xiaoqiang Wang, Haitao Zhang, Zhongcai Zhang
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Abstract

Industrial software testing including software development and debugging depends on the external input interface. The development, debugging and adaptation of interface software simulation consumes a lot of time. The process of software evaluation and self-test lack a portable general software testing equipment suitable for the industrial field, in order to greatly improve the testing efficiency, test integrity and adequacy. Therefore, it is urgent for the general interface generation platform to be transformed into high performance such as hardware, distributed, hardware interface adaptation, test task load and high real-time. In this paper, the overall design framework of portable general software test equipment is carried out, which includes the design and software development of the execution host, the software transformation of general control host and other research contents. At the same time, a portable general software testing equipment for complex industrial system software and multiple interfaces is developed. This platform can satisfy the diversity of complex industrial software system interfaces and the real-time requirements of special systems. It is expected to further promote the development of interface testing automation.
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自主可控便携式通用接口测试平台的研究
工业软件测试包括软件开发和调试依赖于外部输入接口。接口软件仿真的开发、调试和适配耗费大量的时间。在软件评估和自检过程中缺少适合工业现场的便携式通用软件测试设备,以大大提高测试效率、测试完整性和充分性。因此,通用接口生成平台迫切需要向硬件、分布式、硬件接口适配、测试任务负载和高实时性等高性能方向发展。本文进行了便携式通用软件测试设备的总体设计框架,其中包括执行主机的设计与软件开发、通用控制主机的软件改造等研究内容。同时,开发了一种适用于复杂工业系统软件和多接口的便携式通用软件测试设备。该平台能够满足复杂工业软件系统接口的多样性和特殊系统的实时性要求。有望进一步推动接口测试自动化的发展。
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