如何从噪声中提取有效的故障特征频率,如何有效地解调振动信号中固有的调制分量,这种问题的存在影响诊断的精确性。为了解决这一问题,应用调制信号双谱(Modulated signal bispectrum,MSB)的信号处理方法,开发了基于信号解调特性的MSB来...如何从噪声中提取有效的故障特征频率,如何有效地解调振动信号中固有的调制分量,这种问题的存在影响诊断的精确性。为了解决这一问题,应用调制信号双谱(Modulated signal bispectrum,MSB)的信号处理方法,开发了基于信号解调特性的MSB来进行解调和降噪。首先将采集到的振动信号,使用MSB方法进行降噪和解调,得到调制信号双谱图;为准确地量化边带幅度,使用调制信号双谱-边带估计器(Modulation signal bispectrum-sideband estimator,MSB-SE)进行处理;通过选择几个次优的切片构成最佳的切片;最终,通过复合切片谱实现故障特征频率的提取,为进一步验证MSB的准确性,并用调制信号双谱相干性检测。通过对模拟信号及滚动轴承故障实验数据进行分析,验证了该方法的有效性和优越性。展开更多
The phenomenon of logical stochastic resonance (LSR) in a nonlinear bistable system is demonstrated by numerical simulations and experiments. However, the bit rates of the logical signals are relatively low and not ...The phenomenon of logical stochastic resonance (LSR) in a nonlinear bistable system is demonstrated by numerical simulations and experiments. However, the bit rates of the logical signals are relatively low and not suitable for practical applications. First, we examine the responses of the bistable system with fixed parameters to different bit rate logic input signals, showing that an arbitrary high bit rate LSR in a bistable system cannot be achieved. Then, a normalized transform of the LSR bistable system is introduced through a kind of variable substitution. Based on the transform, it is found that LSR for arbitrary high bit rate logic signals in a bistable system can be achieved by adjusting the parameters of the system, setting bias value and amplifying the amplitudes of logic input signals and noise properly. Finally, the desired OR and AND logic outputs to high bit rate logic inputs in a bistable system are obtained by numerical simulations. The study might provide higher feasibility of LSR in practical engineering applications.展开更多
文摘如何从噪声中提取有效的故障特征频率,如何有效地解调振动信号中固有的调制分量,这种问题的存在影响诊断的精确性。为了解决这一问题,应用调制信号双谱(Modulated signal bispectrum,MSB)的信号处理方法,开发了基于信号解调特性的MSB来进行解调和降噪。首先将采集到的振动信号,使用MSB方法进行降噪和解调,得到调制信号双谱图;为准确地量化边带幅度,使用调制信号双谱-边带估计器(Modulation signal bispectrum-sideband estimator,MSB-SE)进行处理;通过选择几个次优的切片构成最佳的切片;最终,通过复合切片谱实现故障特征频率的提取,为进一步验证MSB的准确性,并用调制信号双谱相干性检测。通过对模拟信号及滚动轴承故障实验数据进行分析,验证了该方法的有效性和优越性。
基金supported by the National Natural Science Foundation of China(Grant No.51379526)
文摘The phenomenon of logical stochastic resonance (LSR) in a nonlinear bistable system is demonstrated by numerical simulations and experiments. However, the bit rates of the logical signals are relatively low and not suitable for practical applications. First, we examine the responses of the bistable system with fixed parameters to different bit rate logic input signals, showing that an arbitrary high bit rate LSR in a bistable system cannot be achieved. Then, a normalized transform of the LSR bistable system is introduced through a kind of variable substitution. Based on the transform, it is found that LSR for arbitrary high bit rate logic signals in a bistable system can be achieved by adjusting the parameters of the system, setting bias value and amplifying the amplitudes of logic input signals and noise properly. Finally, the desired OR and AND logic outputs to high bit rate logic inputs in a bistable system are obtained by numerical simulations. The study might provide higher feasibility of LSR in practical engineering applications.