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Application Research for Super-Gaussian Random Vibration Test Control Strategy

机译:超高斯随机振动试验控制策略的应用研究

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摘要

The super-Gaussian random vibration test has increasingly attracted attention for its existed advantages in comparison with traditional random vibration test. The super-Gaussian random signal generation principle is investigated in study based on the research about control theory for the super-Gaussian random vibration test, meanwhile, super-Gaussian random drive signal used in control system is obtained from Poisson process and filter theory. The experiment proves that high control accuracy of output power spectrum and kurtosis can be realized by taking super-Gaussian random vibration control strategy proposed in paper, which is consistent with the requirement in engineering. In the end, super-Gaussian random vibration control system is applied into the Highly Accelerated life Testing(HALT) for the incandescent lamp, and a comparison between super-Gaussian random vibration test and traditional Gaussian distribution random vibration test is carried out, the comparison results indicate that super-Gaussian random vibration excitation signal comparing with Gaussian distribution signal can markedly quicken the fatigue failure process for incandescent lamp.
机译:与传统的随机振动试验相比,超高斯随机振动试验越来越受到其存在的优势。基于关于超高斯随机振动试验的控制理论的研究,研究了超高斯随机信号发电原理,同时,从泊松过程和滤波器理论获得了控制系统中使用的超高斯随机驱动信号。实验证明,通过采用纸上提出的超高斯随机振动控制策略,可以实现高控制功率和峰氏的高控制精度,这与工程中的要求一致。最后,超高斯随机振动控制系统应用于白炽灯的高度加速寿命测试(停止),并进行超高斯随机振动试验和传统高斯分布随机振动测试的比较,比较结果表明,与高斯分布信号相比的超高斯随机振动激励信号可以显着加快白炽灯的疲劳故障过程。

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