首页> 外国专利> METHOD DETERMINING TIME CONSTANTS OF MECHANICAL AND ELECTROMECHANICAL OSCILLATORY SYSTEMS WITH PRESENCE OF TWO INTEGRATING AMPLIFIERS IN MEASUREMENT CIRCUIT

METHOD DETERMINING TIME CONSTANTS OF MECHANICAL AND ELECTROMECHANICAL OSCILLATORY SYSTEMS WITH PRESENCE OF TWO INTEGRATING AMPLIFIERS IN MEASUREMENT CIRCUIT

机译:有测量电路中两个集成放大器的机械和机电振动系统时间常数的确定方法

摘要

FIELD: measurement technology. SUBSTANCE: method is intended for construction of mathematical model of complex dynamic system with distributed parameters. It can also be used in analysis of non-stationary processes in mechanical, electromechanical and electric systems. Method is based on excitation of oscillations of system by harmonic action in range of its natural frequencies and on recording of amplitude- phase frequency characteristic of measured kinematic parameters. Characteristic frequencies corresponding to extreme of actual and imaginary components of kinematic parameter are recorded per each degree of freedom of system. Time constants and gain factors are calculated by these frequencies. Specific feature of this method lies in use of double integral of output signal of oscillatory system in the capacity of kinematic parameter and in presentation of transfer function of system in the form of double integral of sum of transfer functions of oscillatory links. Method allows random noise with zero average value to be practically excluded and accuracy in determination of time constant of dynamic system to be increased by this. EFFECT: increased accuracy in determination of time constants of dynamic systems. 2 dwg
机译:领域:测量技术。实质:该方法旨在构建具有分布参数的复杂动态系统的数学模型。它也可以用于分析机械,机电和电气系统中的非平稳过程。该方法基于在固有频率范围内通过谐波作用激励系统的振荡,并记录所测运动学参数的幅相频率特性。每个系统自由度记录对应于运动学参数的实际和虚部极端的特征频率。时间常数和增益因子由这些频率计算得出。该方法的具体特征在于以运动学参数的能力使用振荡系统的输出信号的双积分,并且以振荡链路的传递函数之和的双积分形式表示系统的传递函数。该方法允许实际上排除具有零平均值的随机噪声,并且由此提高动态系统的时间常数的确定精度。效果:提高动态系统时间常数的确定精度。 2 dwg

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