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Replacing obsolete instrumentation — Lessons learned

机译:更换过时的仪器-经验教训

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Overcoming test-equipment obsolescence is paramount in military and aerospace applications where test systems are supporting equipment with a service life of more than 20 years. However, replacing one or more obsolete instruments in a test system can have major consequences for the deployed Test Program Set (TPS). An emulation strategy can help you incorporate new test instruments to migrate from obsolete instruments. The major challenge is to manage the replacement ideally without changes to the existing TPS. This paper discusses the various aspects related to replacement of obsolete instruments. When instrument models are replaced, new versions are not necessarily compatible with the previous version, either in terms of functionality or remote control commands. The requirement of having minimal or no changes to the TPS generates high challenges for vendors of instruments — the emulation of obsolete instrumentation to achieve backwards compatibility includes code compatibility as well as true functional and behavioural compatibility. Modern instruments have integrated emulation capabilities. The paper describes in detail the requirements, challenges and “lessons learned” through implementing the emulation in complex instruments like network analyzers and spectrum analyzers. In detail the emulation capabilities of modern spectrum analyzers are discussed, for example how to handle different mixer levels, analog vs. digital resolution bandwidth filters, swept frequency spans vs. digital FFTs to achieve behavioural compatibility. Further migration strategies and steps which are required to successfully handle the replacement are discussed. Finally, an overview on measures and strategies to mitigate obsolescence problems for new designed test systems based on layered software structures, on VISA, IVI drivers and technologies like LXI, concludes the paper.
机译:克服的测试设备过时是军事和航空航天应用中的至关重要的,测试系统正在支持拥有20多年的使用寿命的设备。但是,在测试系统中替换一个或多个过时仪器可能对部署的测试程序集(TPS)具有重大影响。仿真策略可以帮助您纳入新的测试仪器,从过时仪器迁移。主要挑战是理想地管理替代物,而不会改变现有的TPS。本文讨论了与替换过时仪器相关的各个方面。替换仪器模型时,新版本不一定与以前的版本兼容,无论是在功能还是远程控制命令方面。对TPS具有最小或没有变化的要求为仪器供应商产生了高挑战 - 过时仪器的仿真实现向后兼容性,包括代码兼容性以及真正的功能和行为兼容性。现代仪器具有集成的仿真功能。本文详细介绍了通过在网络分析仪和频谱分析仪等复杂仪器中实现仿真来实现的要求,挑战和“经验教训”。详细讨论了现代频谱分析仪的仿真能力,例如如何处理不同的混频器级别,模拟与数字分辨率带宽滤波器,扫描频率跨度与数字FFT以实现行为兼容性。讨论了成功处理替代所需的进一步迁移策略和步骤。最后,概述基于分层软件结构的新设计测试系统的措施和策略概述,签证,IVI驱动因素和LXI等技术,总结了这篇论文。

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