电子工业测试系统控制

A. Nikonov, G. Nikonova
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引用次数: 1

摘要

克服测试系统测试信号参数的不确定性是一个迫切需要解决的问题。目标是保证超高频范围内电子设备控制的可靠性、深度和可靠性。任务是寻找一种通用的方法来克服纳秒和亚纳秒范围内测试信号的幅度和时间参数的不确定性。我们解决的问题是建立一个自调节和自适应控制子系统的模型,该模型显示了其在调整过程中的行为,并考虑了设备时间参数的变化。最后给出了自适应调节控制系统的结构和研究数据。结论表明,所提出的自调节自适应自动控制系统在测试系统中应用的可能性。如果设备的静态和动态特性以及测试信号时间参数发生变化,控制系统监视这些变化并修改调节器的参数,同时根据指定的标准保持最佳设置。
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Test Systems Control for the Electronics Industry
Overcoming the parametric uncertainty of the test-signals parameters of the test systems is an urgent topic. The goal is to ensure the reliability, depth and reliability of the control of electronic equipment of the UHF range. The task is to find a universal method of overcoming the uncertainty of the amplitude and time parameters of test signals of the nano- and subnanosecond ranges. We solve the problem of constructing a model of self-adjusting and adaptive control subsystem that shows its behavior during adjustment and takes into account the variation in the apparatus time parameters. As the result we get the structure of a self-adjusting and adaptive control system and the data on its research. Conclusions show the possibility of using the proposed self-adjusting and adaptive automatic control system in test systems. If the static and dynamic characteristics of the equipment and the test signal time parameters are changed, the control system monitors these changes and modifies the parameters of the regulator, while maintaining the optimum setting according to the specified criterion.
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