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An improved OBT strategy for catastrophic faults detection in continuous-time analog filters

机译:连续时间模拟过滤器中灾难性故障检测的改进策略

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Usually in analog filters, the dispersion of process parameters is corrected by means of tuning circuitry, normally built-in with the filter. In such a case, the classical OBT can be used for fault detection. When the filter is not self-tuned however, the OBT oscillation frequency may differ considerably from its nominal expected value due to the parameter dispersion. This could lead to diagnosing a device as faulty when it is indeed sound but out of tune. This paper presents a novel OBT (Oscillation Based Test) scheme applied to a Gm-C band-pass filter without tuning capability, taken here as a case study. It is based on the relative comparison of two oscillation frequencies. A proof of concept is given through simulations carried out on a 2nd order band-pass filter that has been adopted as a case study.
机译:通常在模拟滤波器中,通过调谐电路进行校正处理参数的分散,通常使用滤波器内置。在这种情况下,经典的目标可用于故障检测。然而,当滤波器不是自调谐时,由于参数色散,由于参数色散,因此可以从其标称预期值大致不同。这可能导致当它确实声音但失调时诊断设备存在错误。本文介绍了应用于GM-C带通滤波器的新电源(基于振荡的测试)方案,无需调谐能力,以此在此作为案例研究。它基于两个振荡频率的相对比较。通过以2 ND 订单带通滤波器进行的模拟给出了概念证明,该频带通过过滤器作为案例研究。

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